Ana səhifə

J. Mater. Sci. Mater. Electron


Yüklə 1.47 Mb.
səhifə21/45
tarix26.06.2016
ölçüsü1.47 Mb.
1   ...   17   18   19   20   21   22   23   24   ...   45

Scotese, C.R., R. Van der Voo, and C. McCabe, Paleomagnetism of the Upper Silurian and Lower Devonian carbonates of New York State: evidence for secondary magnetizations residing in magnetite, Phys. Earth Planet. Inter., 30, 385–395, 1982.

Scott, R.G., M. Pilkington, and E.I. Tanczyk, Magnetic investigations of the West Hawk, Deep Bay and Clearwater impact structures, Canada, Meteoritics & Planetary Science, 32 (2), 293-308, 1997.

Sdrolias, M., W.R. Roest, and R.D. Muller, An expression of Philippine Sea plate rotation: the Parece Vela and Shikoku Basins, Tectonophys., 394 (1-2), 69-86, 2004.

Seabaugh, J.L., H.L. Dong, R.K. Kukkadapu, D.D. Eberl, J.P. Morton, and J. Kim, Microbial reduction of Fe(III) in the Fithian and Muloorina illites: Contrasting extents and rates of bioreduction, Clays Clay Miner., 54 (1), 67-79, 2006.

Seama, N., Y. Nogi, and N. Isezaki, A new method for precise determination of the position and strike of magnetic boundaries using vector data of the geomagnetic anomlay field, Geophys. J. Int., 113, 155-164, 1993.

Sebt, A., and M. Akhavan, Switching field distribution of magnetic fine particles, J. Magn. Magn. Mater., 237 (1), 111-18, 2001.

Sedlar, M., V. Matejec, and I. Paulicka, Optical fibre magnetic field sensors using ceramic magnetostrictive jackets, Sensors and Actuators, A84 (3), 297-302, 2000.

Sedlar, M., I. Paulicka, and M. Sayer, Optical fiber magnetic field sensors with ceramic magnetostrictive jackets, Appl. Optics, 35 (27), 5340-5344, 1996.

Sed'mov, N.A., V.F. Babanin, V.V. Morozov, A.A. Zalutskii, V.I. Trukhin, and S.A. Shoba, Magnetomineralogical features of magnetite from different sedimentary rocks and deposits, Moscow University Physics Bulletin, 59 (1), 70-7, 2004.

Segal, V., A. Hjortsberg, A. Rabinovich, D. Nattrass, and K. Raj, AC (60 Hz) and impulse breakdown strength of a colloidal fluid based on transformer oil and magnetite nanoparticles, Conference Record of the (98CH36239), 619-22, 1998.

Segev, A., T. Weissbrod, and B. Lang, Ar-40/Ar-39 dating of the Aptian-Albian igneous rocks in Makhtesh Ramon (Negev, Israel) and its stratigraphic implications, Cretaceous Research, 26 (4), 633-656, 2005.

Seguin, M.K., Palaeomagnetism of some lithological units from the lower Palaeozoic of the Vendée, France, Tectonophys., 96, 257-279, 1983.

Sehitoglu, H., C. Efstathiou, H.J. Maier, and Y. Chumlyakov, Magnetization, shape memory and hysteresis behavior of single and polycrystalline FeNiCoTi, Journal of Magnetism & Magnetic Materials, 292, 89-99, 2005.

Seidel, M., A. Pack, Z.D. Sharp, and E. Seidel, Kakopetros and Ravdoucha iron-oxide deposits, western Crete, Greece: Fluid transport and mineralization within a detachment zone, Econ. Geol., 100 (1), 165-174, 2005.

Seifu, D., A. Kebede, F.W. Oliver, E. Hoffman, E. Hammond, C. Wynter, A. Aning, L. Takacs, I.L. Siu, J.C. Walker, G. Tessema, and M.S. Seehra, Evidence of ferrimagnetic ordering in FeMnO3 produced by mechanical alloying, J. Magn. Magn. Mater., 212 (1), 178-82, 2000.

Sei-Jin, O., C. Chul-Jin, K. Soon-Ju, J. Sang-Ho, and K. Byoung-Kee, Mossbauer analysis for the microstructure and magnetic states of Fe-Co nanoparticle synthesized by chemical vapor condensation, Journal of the Korean Institute of Metals and Materials, 41 (7), 432-8, 2003.

Sei-Jin, O., C. Chul-Jin, K. Soon-Ju, J. Sang-Ho, K. Byoung-Kee, and P. Jin-Soo, Mossbauer analysis on the magnetic properties of Fe-Co nanoparticles synthesized by chemical vapor condensation process, J. Magn. Magn. Mater., 280, 2-3, 2004.

Seikh, M.M., C. Narayana, P.A. Metcalf, J.M. Honig, and A.K. Sood, Brillouin scattering studies in Fe3O4 across the Verwey transition - art. no. 174106, Physical Review B, 7117 (17), 4106, 2005.

Seino, S., T. Kinoshita, Y. Otome, K. Okitsu, T. Nakagawa, and T.A. Yamamoto, Magnetic composite nanoparticle of Au/gamma-Fe2O3 synthesized by gamma-ray irradiation, Chem. Lett, 32 (8), 690-691, 2003.

Seip, C.T., E.E. Carpenter, C.J. O'Connor, V.T. John, and L. Sichu, Magnetic properties of a series of ferrite nanoparticles synthesized in reverse micelles, IEEE Trans. Magn., 34 (4, pt.1), 1111-13, 1998.

Sejkora, J., J. Cejka, J. Hlousek, M. Novak, and V. Srein, Phosphowalpurgite, the (PO4)-dominant analogue of walpurgite, from Smrkovec, Slavkovsk Les Mountains, Czech Republic, Can. Mineral, 42 (Part 4), 963-972, 2004.

Sejrup, H.P., G.H. Miller, J. Brigham-Grette, R. Lövlie, and D. Hopkins, Amino epimerization implies rapid sedimentation rates in Arctic Ocean cores, Nature, 310, 772-775, 1984.

Sejun, O., and Y. Insuk, Electrical conduction noise in magnetite thin films, J. Korean Phys. Soc, 31 (4), 621-4, 1997.

Seki, M., A. Hossain, H. Tabata, and T. Kawai, Photocontrol of magnetization in Al-substituted Fe3O4 thin films, Solid State Comm., 133 (12), 791-796, 2005.

Seki, T., T. Shima, K. Takanashi, Y. Takahashi, E. Matsubara, and K. Hono, Optimum compositions for the low-temperature fabrication of highly ordered FePt(001) and FePt(110) films, IEEE Trans. Magn., 40 (4 Part 2), 2522-2524, 2004.

Selkin, P.A., J.S. Gee, L. Tauxe, W.P. Meurer, and A.J. Newell, The effect of remanence anisotropy on paleointensity estimates: a case study from the Archean Stillwater Complex, Earth Planet. Sci. Lett., 183 (3), 403-16, 2000.

Selkin, P.A., and L. Tauxe, Long-term variations in palaeointensity, Philosophical Transactions of the Royal Society London, Series A, 358 (1768), 1065-88, 2000.

Selkin, P.A., and L. Tauxe, Long-term variations in paleointensity, Phil. Trans. Roy. Soc. London A, 358, 1065-1088, 2000.

Selleck, B.W., J.M. McLelland, and M.E. Bickford, Granite emplacement during tectonic exhumation: The Adirondack example, Geology, 33 (10), 781-784, 2005.

Semaw, S., S.W. Simpson, J. Quade, P.R. Renne, R.F. Butler, W.C. McIntosh, N. Levin, M. Dominguez-Rodrigo, and M.J. Rogers, Early Pliocene hominids from Gona, Ethiopia, Nature, 433 (7023), 301-305, 2005.

Semenov, V.A., and V.S. Shakmatov, Inelastic scattering of slow neutrons by hematite, Fizika Tverdogo Tela (Physics—Solid State), 38 (6), 1844-1846, 1996.

Semenov, Y.G., and K.W. Kim, Spin polaron and bistability in ferromagnetic semiconductor quantum structures - art. no. 125303, Physical Review B, 7012 (12), 5303, 2004.

Semirov, A.V., B.V. Gavrilyuk, A.A. Rudenko, V.O. Kudryavcev, and N.P. Kovaleva, Magnetooptic setup for investigating the dynamic properties of domain walls in thin ferromagnetic films, Tech. Phys, 50 (10), 1376-1378, 2005.

Sempere, J.-C., High-magnetization zones near spreading center discontinuities, Earth Planet. Sci. Lett., 107, 389–405, 1991.

Sen, G., Generation of Deccan Trap magmas, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 110 (4), 409-31, 2001.

Sen, G., Giant plagioclase basalts, eruption rate versus time. Response to Sheth's comments and some additional thoughts, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 111 (4), 487-8, 2002.

Sen, K., S. Majumder, and M.A. Mamtani, Degree of magnetic anisotropy as a strain intensity gauge in ferromagnetic granites, J. Geol. Soc, 162 (Part 4), 583-586, 2005.

Sena, S.P., R.A. Lindley, H.J. Blythe, C. Sauer, M. Al-Kafarji, and G.A. Gehring, Investigation of magnetite thin films produced by pulsed laser deposition, J. Magn. Magn. Mater., 176 (2-3), 111-26, 1997.

Senanayake, W.E., and M.W. McElhinny, Hysteresis and susceptibility characteristics of magnetite and titanomagnetites: interpretation of results from basaltic rocks, Phys. Earth Planet. Inter., 26, 47–55, 1981.

Senanayake, W.E., and M.W. McElhinny, The effects of heating on low-temperature susceptibility and hysteresis properties of basalts, Phys. Earth Planet. Inter., 30, 317-321, 1982.

Seneor, P., A. Fert, J.L. Maurice, F. Montaigne, F. Petroff, and A. Vaures, Large magnetoresistance in tunnel junctions with an iron oxide electrode, Appl. Phys. Lett., 74 (26), 4017-19, 1999.

Senftle, E., A.N. Thorpe, J.R. Grant, A. Hildebrand, H. Moholy-Nagy, B.J. Evans, and L. May, Magnetic measurements of glass from Tikal, Guatemala: possible tektites, J. Geophys. Res., 105 (B8), 18921-5, 2000.

Senftle, F.E., A.N. Thorpe, C. Briggs, C. Alexander, J. Minkin, and D.L. Griscom, The Néel transition and magnetic properties of terrestrial, synthetic, and lunar ilmenites, Earth Planet. Sci. Lett., 26, 377–386, 1975.

Senk, D., S. Sridhar, M. Safi, N.J. McDonald, and M. Krings, Oxidation and characterization of As-cast TRIP steel surfaces, Steel Res. Int, 75 (10), 680-685, 2004.

Senkevich, J.J., D.A. Jones, and I. Chatterjee, Measuring the growth of oxide films on low carbon steel at 500 degrees C by impedance spectroscopy, Corrosion Sci., 42 (2), 201-10, 2000.

Senko, J.M., Y. Mohamed, T.A. Dewers, and L.R. Krumholz, Role for Fe(III) minerals in nitrate-dependent microbial U(IV) oxidation, Environ. Sci. Technol, 39 (8), 2529-2536, 2005.

Seo, H., Orbital ordering and bond dimerization in magnetite, Physica B, 312-313, 691-3, 2002.

Seo, H., M. Ogata, and H. Fukuyama, Theory of the verwey transition in Fe3O4, Physica B: Condensed Matter, 329 (Part 2), 932-933, 2003.

Seo, H., M. Ogata, and H. Fukuyama, Aspects of the Verwey transition in magnetite, Physical Review B, 65 (8), 085107/1-9, 2002.

Seo, J.N., S.M. Jeon, S.J. Park, and H.S. Lee, An experimental and numerical investigation of flat panel display cell using magnetic fluid, J. Magn. Magn. Mater., 252 (1), 353-5, 2002.

Seoighe, C., J. Naumann, and I.V. Shvets, Studies of surface structures on single crystalline magnetite(100), Surface Science, 440 (1-2), 116-24, 1999.

Seong-Jae, D., S. Dongwoo, and P. Yong-Hee, Remagnetization of the Pyeongan Supergroup in the Yeongwol area, Korea, J. Geomagn. Geoelectr., 49 (10), 1217-32, 1997.

Seongtae, B., W.F. Egelhoff, Jr., P.J. Chen, and J.H. Judy, Effects of deposition process parameters on exchange coupling of alpha -Fe2O3/NiFe bi-layers and GMR of alpha -Fe2O3/NiFe/Cu/NiFe spin valves, IEEE Trans. Magn., 36 (5), 2892-5, 2000.

Seongtae, B., J.H. Judy, P.J. Chen, and W.F. Egelhoff, Dependence of physical properties and giant magnetoresistance ratio on substrate position during rf sputtering of NiO and alpha - Fe2O3 for bottom spin valves., Appl. Phys. Lett., 81 (12), 2208-10, 2002.

Seongtae, B., J.H. Judy, P.J. Chen, W.F. Egelhoff, and S. Zurn, High thermal stability of exchange-biased bilayers and bottom giant magnetoresistive spin valves using an alpha - Fe2O3 antiferromagnetic layer, Appl. Phys. Lett., 78 (26), 4163-5, 2001.

Seongtae, B., S. Zurn, W.F. Egelhoff, Jr., P.J. Chen, L. Sheppard, E.J. Torok, and J.H. Judy, Magnetoelectronic devices using alpha - Fe2O3 bottom GMR spin-valves, IEEE Trans. Magn., 37 (4), 1986-8, 2001.

Sergeev-Cherenkov, A.N., M.N. Antipina, T.V. Yurova, A.A. Rakhnyanskaya, R.V. Gainutdinov, A.L. Tolstikhina, V.V. Kislov, and G.B. Khomutov, Low-dimensional hybrid organic-inorganic nanostructures via planar DNA-amphiphilic polycation complexes, Surface Science, 566 (Part 1), 659-663, 2004.

Sergienko, E.S., and V.A. Shashkanov, Geomagnetic paleointensity during Cenozoic reversals, Izvestiya, Physics of the Solid Earth, 35 (6, p.497), 66-75, 1999.

Serna, C.J., F. Bodker, S. Morup, M.P. Morales, F. Sandiumenge, and V. Veintemillas-Verdaguer, Spin frustration in maghemite nanoparticles, Solid State Comm., 118 (9), 437-40, 2001.

Serrate, D., J.M. De Teresa, P.A. Algarabel, R. Fernandez-Pacheco, J. Galibert, and M.R. Ibarra, Grain-boundary magnetoresistance up to 42 T in cold-pressed Fe3O4 nanopowders, J. Appl. Phys., 97 (8), 84317-1, 2005.

Serrate, D., J.M. De Teresa, P.A. Algarabel, R. Fernandez-Pacheco, J. Galibert, and M.R. Ibarra, Grain-boundary magnetoresistance up to 42 T in cold-pressed Fe3O4 nanopowders - art. no. 084317, J. Appl. Phys., 97 (8), 84317, 2005.

Serrate, D., J.M. De Teresa, P.A. Algarabel, M.R. Ibarra, and J. Galibert, Intergrain magnetoresistance up to 50 T in the half-metallic (Ba0.8Sr0.2)(2)FeMoO6 double perovskite: Spin-glass behavior of the grain boundary - art. no. 104409, Physical Review B, 7110 (10), 4409, 2005.

Serreze, M.C., A.S. McLaren, and R.G. Barry, Seasonal variations of sea ice motion in the transpolar drift stream, Geophys. Res. Lett., 16, 811-814, 1989.

Seto, M., K. Shinji, Y. Kobayashi, R. Haruki, Y. Yoda, T. Mitsui, and T. Ishikawa, Site-specific phonon density of states discerned using electronic states, Phys. Rev. Lett., 91 (18), 1-4, 2003.

Seyfried, W.E., Jr., Experimental and theoretical constraints on hydrothermal alteration processes at mid-ocean ridges, Ann. Rev. Earth Planet. Sci., 15, 317–35, 1987.

Seyfried, W.E., Jr., and J.L. Bischoff, Low temperature basalt alteration by seawater: an experimental study at 70°C and 150°C, Geochim. Cosmochim. Acta, 43, 1937–1947, 1979.

Seyfried, W.E., Jr., and M.J. Mottl, Hydrothermal alteration of basalt by seawater under seawater-dominated conditions, Geochim. Cosmochim. Acta, 46, 985–1002, 1982.

Seyler, C.E., Nonlinear 3-D evolution of bounded kinetic Alfven waves due to shear flow and collisionless tearing instability, Geophys. Res. Lett., 15 (8), 756, 1988.

Seyoum, H.M., L.H. Bennett, and E. Della Torre, Temporal and temperature variations of dc magnetic aftereffect measurements of Fe3O4 powders, J. Appl. Phys., 93 (5), 2820-2, 2003.

Seyyed Ebrahimi, S.A., A. Kianvash, C.B. Ponton, and I.R. Harris, The effect of hydrogen on composition, microstructure and magnetic properties of strontium hexaferrite, Ceramics International, 26 (4), 379-81, 2000.

Seyyed Ebrahimi, S.A., A.J. Williams, N. Martinez, A. Ataie, A. Kianvash, C.B. Ponton, and I.R. Harris, Treatment of strontium hexaferrite powder synthesized conventionally to produce high coercivity, J. Phys. IV, 7 (C1), 325-6, 1997.

Sha, G.Y., T.H. Wang, J.B. Xiao, and C.H. Liang, A mild solvothermal route to alpha-Fe2O3 nanoparticles, Mater. Res. Bull, 39 (12), 1917-1921, 2004.

Shackleton, N., A. Berger, and W.R. Peltier, An alternative astronomical calibration of the lower Pleistocene timescale based on ODP Site 677, Transactions of the Royal Society of Edinburgh: Earth Science, 81, 251-261, 1990.

Shackleton, N.J., The 100,000-year ice-age cycle identified and found to lag temperature, carbon dioxide, and orbital eccentricity, Science, 289 (5486), 1897-1902, 2000.

Shackleton, N.J., J. Backman, H. Zimmermann, D.V. Kent, M.A. Hall, D.G. Roberts, D. Schnitker, J.G. Baldauf, A. Despraires, R. Homringhausen, P. Huddlestrun, J.B. Keene, A.J. Kaltenback, K.A.O. Krumsiek, A.C. Morton, J.W. Murray, and J. Westberg-Smith, Oxygen isotope calibration of the onset of ice-rafting and history of glaciation in the North Atlantik region, Nature, 307, 620-623, 1984.

Shackleton, N.J., M.A. Hall, and U. Bleil, Carbon-isotope stratigraphy, Site 577, in Init. Repts. DSDP, edited by G.R. Heath, L.H. Burckle, and e. al., pp. 503-511, Washington, 1985.

Shackleton, N.J., M.A. Hall, I. Raffi, L. Tauxe, and J. Zachos, Astronomical calibration age for the Oligocene-Miocene boundary, Geology (Boulder), 28 (5), 447-450, 2000.

Shackleton, N.J., G.J. Kukla, and Z.-S. An, Correlation of the Chinese loess sequence with the marine oxygen isotope record and astronomical calibration, 2.6 Ma to present (abstract), INQUA Abstr. Papers Posters, 13, 322, 1991.

Shackleton, N.J., and N.D. Opdyke, Oxygen isotope and paleomagnetic evidence for early northern hemisphere glaciation, Nature, 270, 216–219, 1977.

Shackleton, N.J., and N.D. Opdyke, Oxygen isotope and paleomagnetic stratigraphy of equatorial Pacific core V28-238: oxygen isotope temperatures and ice volumes on a 105-year and 106-year scale, Quat. Res., 3, 39–55, 1973.

Shackleton, N.J., T.H. van Andel, E.A. Boyle, E. Jansen, L. Labeyrie, M. Leinen, J. McKenzie, L. Mayer, and E. Sundquist, Contributions from the oceanic record to the study of global change on three time scales—Report of Working Group 1, Interlaken Workshop for Past Global Changes, Palaeogeogr. Palaeoclimatol. Palaeoecol., 82, 5–37, 1990.

Shafi, K.V.P.M., A. Ulman, X. Yan, Y. Nan-Loh, C. Estournes, H. White, and M. Rafailovich, Sonochemical synthesis of functionalized amorphous iron oxide nanoparticles, Langmuir, 17 (16), 5093-7, 2001.

Shafi, K.V.P.M., S. Wizel, T. Prozorov, and A. Gedanken, The use of ultrasound radiation for the preparation of magnetic fluids, Thin Sol. Films, 318 (1-2), 38-41, 1998.

Shah, A.K., J. Brozena, P. Vogt, D. Daniels, and J. Plescia, New surveys of the Chesapeake Bay impact structure suggest melt pockets and target-structure effect, Geology, 33 (5), 417-420, 2005.

Shah, P., M. Sohma, K. Kawaguchi, and I. Yamaguchi, Growth conditions, structural and magnetic properties of M/ Fe3O4 /I (M=Al, Ag and I=Al2O3, MgO) multilayers., J. Magn. Magn. Mater., 247 (1), 1-5, 2002.

Shalaby, I.M., E. Stumpfl, H.M. Helmy, M.M. El Mahallawi, and O.A. Kamel, Silver and silver-bearing minerals at the Um Samiuki volcanogenic massive sulphide deposit, Eastern Desert, Egypt, Miner. Depos, 39 (5-6), 608-621, 2004.

Shalini, K., G.N. Subbanna, S. Chandrasekaran, and S.A. Shivashankar, Thin films of iron oxide by low pressure MOCVD using a novel precursor: tris(t-butyl-3-oxo-butanoato)iron(III), Thin Sol. Films, 424 (1), 56-60, 2003.

Shalygina, E.E., L.V. Kozlovskii, N.M. Abrosimova, and M.A. Mukasheva, Effect of annealing on the magnetic and magnetooptical properties of Ni films, Phys. Solid State, 47 (4), 684-689, 2005.

Shalyguina, E.E., I. Skorvanek, P. Svec, V.A. Mel'nikov, and N.M. Abrosimova, Inverted near-surface hysteresis loops in heterogeneous (nanocrystalline/amorphous) Fe81Nb7B12 alloys, J. Exp. Theor. Phys, 99 (3), 544-551, 2004.

Shamsutdinov, D.M., and R.M. Sabitov, Domain wall dynamics near the limit velocity in a cubic ferromagnet with induced magnetic anisotropy, Journal of Magnetism & Magnetic Materials, 280 (2-3), 169-175, 2004.

Shane, P., T. Black, and J. Westgate, Isothermal plateau fission-track age for a paleomagnetic excursion in the Mamaku Ignimbrite, New Zealand, and implications for late Quaternary stratigraphy, Geophys. Res. Lett., 21, 1695-1698, 1994.

Shankar, S.S., U.S. Patil, B.L.V. Prasad, and M. Sastry, Liquid foam as a template for the synthesis of iron oxyhydroxide nanoparticles, Langmuir, 20 (20), 8853-8857, 2004.

Shankland, T.J., A.G. Duba, B.J. Wanamaker, and L.M. Hirsch, Attaining thermodynamic equilibrium in electrical conductivity measurements of minerals (abstract), Eos Trans. Am. Geophys. Union, 72 (44 suppl.), 123, 1991.

Shanmugam, G., R.J. Moiola, J.G. McPherson, and S. O'Connell, Comparison of turbidite facies associations in modern passive-margin Mississippi fan with ancient active-margin fans, Sed. Geol., 58 (1), 63, 1988.

Shao, H.F., X.F. Qian, J. Yin, and Z.K. Zhu, Controlled morphology synthesis of beta-FeOOH and the phase transition to Fe2O3, J. Solid State Chem, 178 (10), 3130-3136, 2005.

Shao, H.P., H. Lee, Y.Q. Huang, I.Y. Ko, and C. Kim, Control of iron nanoparticles size and shape by thermal decomposition method, IEEE Trans. Magn., 41 (10), 3388-3390, 2005.

Shao, J.A., F.X. Lu, L.Q. Zhang, and G.H. Shi, Temporal and spatial evidences for Early Cretaceous disturbance of the lithosphere beneath North China, Acta Petrol. Sin, 22 (2), 277-284, 2006.

Shao, J.C., M. Fuller, and Y. Hamano, On the equatorial virtual pole distribution, Earth Planets & Space, 56 (6), 589-598, 2004.

Shao, J.-C., M. Fuller, and Y. Hamano, On the equatorial virtual pole distribution, Earth, Planets and Space, 56 (6), 589-98, 2004.

Shao, Y.Z., W.R. Zhong, and G.M. Lin, Nonequilibrium dynamic phase transition of an Ising spin system driven by various oscillating field, Acta Phys. Sin, 53 (9), 3165-3170, 2004.

Shapiro, M.N., Kinematics of the Campanian-Maastrichtian island arcs in northeastern Asia in light of drilling results on the Emperor Seamounts, Geotectonics, 39 (5), 408-415, 2005.

Shapiro, V.A., and N.A. Ivanov, Characteristics of dynamic, impact-generated magnetization in samples of natural ferromagnetic substances, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 5 (5), 50–60 (298–304 in Engl. transl.), 1969.

Shapiro, V.A., N.A. Ivanov, and L.N. Ivanova, Investigation of geomagnetic-field secular variation around the Sverdlovsk Magnetic Observatory, Geophys. J. R. Astr. Soc., 53, 497–502, 1978.

Sharafat, S., N. Ghoniem, and S. Zinkle, Thermodynamic stability of oxide, nitride, and carbide coating materials in liquid Sn-25Li, J. Nucl. Mater., 329-33 (Part B), 1429-1433, 2004.

Sharma, A.S., P.J. Cargill, and K. Papadopoulos, Resonance absorption of alfven waves at comet-solar wind interaction regions, Geophys. Res. Lett., 15 (8), 740, 1988.

Sharma, P., S.K. Bhattacharya, and B.L.K. Somayajulu, Beryllium-10 in deep-sea sediments and cosmic ray intensity variations, Proc. 18th ICRC, Bangalore, 2, 337–340, 1983.

Sharma, P., and A. Gupta, Effect of preparation condition on the soft magnetic properties of FeCuNbSiB thin films, Journal of Magnetism & Magnetic Materials, 288, 347-353, 2005.

Sharma, P.V., Geophysical Methods in Geology, 442 pp., Elsevier, New York, 1986.

Sharma, R., S. Lamba, and S. Annapoorni, Magnetic properties of polypyrrole-coated iron oxide nanoparticles, J. Phys. D-Appl. Phys, 38 (18), 3354-3359, 2005.

Sharma, R., C. Pratima, S. Lamba, and S. Annapoorni, Interaction effects in magnetic oxide nanoparticle systems, Pramana-J. Phys, 65 (4 Special Issue SI), 739-743, 2005.

Sharonova, Z.V., O.V. Pilipenko, V.M. Trubikhin, A.N. Didenko, and A.G. Fein, Reconstruction of the geomagnetic field over the last 75000 years from paleomagnetic records in the Roksolany loess-soil section (the Dniester River, Ukraine), Izvestiya, Physics of the Solid Earth, 40 (1), 2-10, 2004.

Sharrock, M.P., Time-dependent magnetic phenomena and particle-size effects in recording media, IEEE Trans. Magn., MAG-26, 193–197, 1990.

Shashkanov, V.A., Detrital magnetization of sedimentary rocks as a function of the magnetic field intensity, Izvestiya, Physics of the Solid Earth, 36 (8), 667-76, 2000.

Shashkanov, V.A., P.V. Dubrovin, L.Y. Dubrovina, I.N. Petrov, and A.V. Smirnov, Magnetic anisotropy of sedimentary rocks as a source of paleomagnetic information, Izvestiya, Physics of the Solid Earth, 38 (5), 418-28, 2002.

Shashkanov, V.A., E.V. Isupova, and P.V. Dubrovin, Elimination of the inclination error in the detrital magnetization of sedimentary rocks, Izvestiya, Physics of the Solid Earth, 39 (9), 749-58, 2003.

Shashkanov, V.A., and V.V. Metallova, Temperature dependence of the magnetic viscosity coefficient, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 6 (7), 88–91 (457–459 in Engl. transl.), 1970.

Shashkanov, V.A., and V.V. Metallova, One form of magnetization of rocks, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 6 (9), 102–106 (599–602 in Engl. transl.), 1970.

Shashkanov, V.A., A.I. Novoselov, and A.V. Smirnov, The nature and magnetic anisotropy and inclination errors of orientational magnetization in sedimentary rocks, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 25, 46–54 (in Engl. transl.), 1989.

Shau, Y.-H., D.R. Peacor, and E.J. Essene, Formation of magnetic single-domain magnetite in ocean ridge basalts with implications for sea-floor magnetism, Science, 261, 343–345, 1993.

Shau, Y.H., M. Torii, C.S. Horng, and D.R. Peacor, Subsolidus evolution and alteration of titanomagnetite in ocean ridge basalts from Deep Sea Drilling Project/Ocean Drilling Program Hole 504B, Leg 83: implications for the timing of magnetization, J. Geophys. Res., 105 (B10), 23635-49, 2000.

Shauo, C.N., C.G. Chao, and M.C. Cheng, Isolation of magnetite nanoparticles by colloidal dispersant in aqueous solution, Mater. Trans, 47 (1), 143-148, 2006.

Shaw, H.R., The periodic structure of the natural record and nonlinear dynamics, Eos, 68 (1651-1664), 1987.

Shaw, J., A new method of determining the magnitude of the palaeomagnetic field: application to five historic lavas and five archaeological samples, Geophys. J. R. Astr. Soc., 39, 133–141, 1974.

Shaw, J., Strong geomagnetic fields during a single Icelandic polarity transition, Geophys. J. R. Astr. Soc., 40, 345-350, 1975.

Shaw, J., M.J. Hill, and S.J. Openshaw, Investigating the ancient Martian magnetic field using microwaves, Earth Planet. Sci. Lett., 190 (3), 103-9, 2001.

Shaw, J., and J.A. Share, A microcomputer controlled system for low temperature magnetic susceptibility measurements, Phys. Earth Planet. Inter., 42, 1-4, 1986.

Shaw, J., J.A. Share, and J. Rogers, An automated superconducting magnetometer and demagnetizing system, Geophys. J. R. Astr. Soc., 78, 209-217, 1984.

Shaw, J., D. Walton, S. Yang, T.C. Rolph, and J.A. Share, Microwave archeointensities from Peruvian ceramics, Geophys. J. Int., 124, 241-244, 1996.

Shaw, J., S. Yang, T.C. Rolph, and F.Y. Sun, A comparison of archaeointensity results from Chinese ceramics using microwave and conventional Thellier's and Shaw's methods, Geophys. J. Int., 136 (3), 714-18, 1999.

Shaw, J., S. Yang, and Q.Y. Wei, Archaeointensity variations for the past 7,500 years evaluated from ancient Chinese ceramics, J. Geomagn. Geoelectr., 47, 59-70, 1995.

Shaw, J.L., A.C. Wright, R.N. Sinclair, G.K. Marasinghe, D. Holland, M.R. Lees, and C.R. Scales, Spin glass-like antiferromagnetic interactions in iron phosphate glasses.

Shaw, K.A., E. Lochner, and D.M. Lind, Interdiffusion study of magnesium in magnetite thin films grown on magnesium oxide (001) substrates, J. Appl. Phys., 87 (4), 1727-33, 2000.

Shaw, K.A., E. Lochner, D.M. Lind, J.F. Anderson, M. Kuhn, and U. Diebold, Magnesium outdiffusion through magnetite films grown on magnesium oxide (001), J. Appl. Phys., 81 (8), 5176, 1997.

Shaw, K.A., E. Lochner, D.M. Lind, R.C. DiBari, P. Stoyanov, and B. Singer, Spin-resolved electron spectroscopies of epitaxial magnetite <001> (abstr.), J. Appl. Phys., 79 (8), 5841, 1996.

Shchepetkin, A.A., Crystal-chemical nature of Mg-M-Fe-O (M=Cr, Al) spinel ferrites, Inorganic Materials, 40 (4), 424-6, 2004.

Shcherbakov, V.P., Theory concerning the magnetic properties of pseudo-single domain grains, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 14, 356–362 (in Engl. transl.), 1978.

Shcherbakov, V.P., Thermoremanent magnetization of multidomain grains and stability in demagnetization by temperature and alternating fields, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 17, 127–135 (in Engl. transl.), 1981.

Shcherbakov, V.P., The role of kinetics in the oxidation of titanomagnetite grains, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 18, 353–357 (in Engl. transl.), 1982.

Shcherbakov, V.P., On the theory of low-temperature oxidation of titanomagnetite grains, Phys. Earth Planet. Inter., 30, 324–329, 1982.

Shcherbakov, V.P., and K. Fabian, On the determination of magnetic grain-size distributions of superparamagnetic particle ensembles using the frequency dependence of susceptibility at different temperatures, Geophys. J. Int., 162 (3), 736-746, 2005.

Shcherbakov, V.P., and B.E. Lamash, Metastability threshold sizes in single-domain magnetite particles, Geophys. Res. Lett., 15 (5), 526-529, 1988.

Shcherbakov, V.P., B.E. Lamash, P.W. Schmidt, and N.K. Sycheva, Micromagnetic formulation for the personal computer, Phys. Earth Planet. Inter., 65, 15–27, 1990.

Shcherbakov, V.P., B.E. Lamash, and N.K. Sycheva, Comparison between the Properties of Crystallization and Thermoremanent Magnetizations in an Ensemble of Interacting Single-Domain Grains from the Results of Mathematical Modeling, Izvestiya, Physics of the Solid Earth, 34 (8), 685-693, 1998.

Shcherbakov, V.P., B.E. Lamash, and N.K. Sycheva, The magnetic susceptibility and viscous magnetization of interacting single-domain grains, Izvestiya, Physics of the Solid Earth, 36 (5), 430-6, 2000.

Shcherbakov, V.P., B.E. Lamash, and N.K. Sycheva, Monte-Carlo modelling of thermoremanence acquisition in interacting single-domain grains, Phys. Earth Planet. Inter., 87, 197–211, 1995.

Shcherbakov, V.P., V.S. Markovsky, and S.A. Tarashchan, Equilibrium magnetization in a multidomain grain nonuniform in its magnetic rigidity, Geofiz. Zh. (J. Geophys.), 11, 52–57, 1989.

Shcherbakov, V.P., E. McClelland, and V.V. Shcherbakova, A model of multidomain thermoremanent magnetization incorporating temperature-variable domain structure, J. Geophys. Res. B, 98, 6201–6216, 1993.

Shcherbakov, V.P., and V.V. Shcherbakova, Grain effects during deposition, in Geomagnetism of Baked Clays and Recent Sediments, edited by K.M. Creer, P. Tucholka, and C.E. Barton, pp. 20–22, Elsevier, New York, 1983.

Shcherbakov, V.P., and V.V. Shcherbakova, On the suitability of the Thellier method of palaeointensity determinations on pseudo-single-domain and multidomain grains, Geophys. J. Int., 146 (1), 20-30, 2001.

Shcherbakov, V.P., and V.V. Shcherbakova, The paleomagnetic direction determination: Implications of the domain structure of ferromagnetic grains in rocks, Izvestiya, Physics of the Solid Earth, 38 (5), 404-11, 2002.

Shcherbakov, V.P., and V.V. Shcherbakova, On the physics of acquisition post-depositional remanent magnetization, Phys. Earth Planet. Inter., 46, 64–70, 1987.

Shcherbakov, V.P., V.V. Shcherbakova, and Y.K. Vinogradov, On a thermomagnetic criterion for the identification of the domain structure, Izvestiya, Physics of the Solid Earth, 37 (3), 244-8, 2001.

Shcherbakov, V.P., V.V. Shcherbakova, Y.K. Vinogradov, and F. Heider, Thermal stability of pTRMs created from different magnetic states, Phys. Earth Planet. Inter., 126 (1-2), 59-73, 2001.

Shcherbakov, V.P., L.Y. Sholpo, G.M. Solodovnikov, and B.Y. Lamash, Paleointensity and formation physics of rock remanent magnetization, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 28, 1029–1037 (in Engl. transl.), 1992.

Shcherbakov, V.P., G.M. Solodovnikov, and N.K. Sycheva, Variations in the geomagnetic dipole during the past 400 million years (volcanic rocks), Izvestiya, Physics of the Solid Earth, 38 (2), 113-19, 2002.

Shcherbakov, V.P., and N.K. Sycheva, Fulfillment of the Thelliers Laws of Independence and Additivity of Partial Thermoremanent Magnetizations for Interacting Singledomain Grains (Numerical Experiment), Izvestiya, Physics of the Solid Earth, 33 (4), 329-334, 1997.

Shcherbakov, V.P., and N.K. Sycheva, Numerical modeling of the domain structure in magnetite grains of submicron sizes, Izvestiya, Physics of the Solid Earth, 37 (4), 334-44, 2001.

Shcherbakov, V.P., and N.K. Sycheva, Three-dimensional modeling of biased hysteresis loops in the presence of exchange anisotropy at the boundary between ferro- and antiferromagnetic phases, Izvestiya-Physics of the Solid Earth, 41 (6), 485-491, 2005.

Shcherbakov, V.P., N.K. Sycheva, and B.E. Lamesh, Monte Carlo modelling of TRM and CRM acquisition and comparison of their properties in an ensemble of interacting SD grains, Geophys. Res. Lett., 23 (20), 2827-2830, 1996.

Shcherbakov, V.P., and S.A. Tarashchan, Domain structure of titanomagnetite grains with closure domains, Phys. Earth Planet. Inter., 65, 177–187, 1990.

Shcherbakov, V.P., S.A. Tarashchan, and B.E. Lamash, Domain structure of PSD- and MD-grains and its temperature dependence, Phys. Earth Planet. Inter., 63, 23–31, 1990.

Shcherbakova, E.V., N.V. Mushnikov, G.V. Ivanova, and P.B. Terent'ev, Magnetocrystalline anisotropy of R-2(Fe1-xVx)(17) compounds with R = Y and Sm, Phys. Metals Metallogr, 99 (2), 132-138, 2005.

Shcherbakova, V.V., V.P. Shcherbakov, and F. Heider, Properties of partial thermoremanent magnetization in pseudosingle domain and multidomain magnetite grains, J. Geophys. Res., 105 (B1), 767-81, 1999.

Shcherbakova, V.V., V.P. Shcherbakov, P.W. Schmidt, and M. Prévot, On the effect of low-temperature demagnetization on TRMs and pTRMs, Geophys. J. Int., 127 (2), 379-386, 1996.

Shchukin, D.G., I.L. Radtchenko, and G.B. Sukhorukov, Synthesis of nanosized magnetic ferrite particles inside hollow polyelectrolyte capsules, J. Phys. Chem. B, 107 (1), 86-90, 2003.

Shchukin, D.G., T. Shutava, E. Shchukina, G.B. Sukhorukov, and Y.M. Lvov, Modified polyelectrolyte microcapsules as smart defense systems, Chem. Mat, 16 (18), 3446-3451, 2004.

Shea, M.A., ed., Contributions in Geomagnetism and Paleomagnetism, Rev. Geophys., 29, suppl., 343–442, 1991.

Shebanova, O.N., and P. Lazor, Vibrational modeling of the thermodynamic properties of magnetite ( Fe3O4 ) at high pressure from Raman spectroscopic study, J. Chem. Phys., 119 (12), 6100-10, 2003.

Shemer, G., and G. Markovich, Enhancement of magneto-optical effects in magnetite nanocrystals near gold surfaces, J. Phys. Chem. B, 106 (36), 9195-7, 2002.

Shen, C.-D., J. Beer, T.-S. Liu, H. Oeschger, G. Bonani, M. Suter, and W. Wölfli, 10Be in Chinese loess, Earth Planet. Sci. Lett., 109, 169–178, 1992.

Shen, C.-D., J. Beer, T.-S. Liu, H. Oeschger, G. Bonani, M. Suter, and W. Wölfli, 10Be in loess, in Loess, Environment, and Global Change, edited by T.-S. Liu, pp. 48–60, Science Press, Beijing, 1991.

Shen, F., Q.Y. Xu, G.H. Yu, W.Y. Lai, Z. Zhang, Z.Q. Lu, G. Pan, and A. Al-Jibouri, A specular spin valve with discontinuous nano-oxide layers, Appl. Phys. Lett., 80 (23), 4410-12, 2002.

Shen, J.C., and Z. Duvnjak, Effects of temperature and pH on adsorption isotherms for cupric and cadmium ions in their single and binary solutions using corncob particles as adsorbent, Sep. Sci. Technol, 39 (13), 3023-3041, 2004.

Shen, L., P.E. Laibinis, and T.A. Hatton, Aqueous magnetic fluids stabilized by surfactant bilayers, J. Magn. Magn. Mater., 194 (1-3), 37-44, 1999.

Shen, L., P.E. Laibinis, and T.A. Hatton, Bilayer surfactant stabilized magnetic fluids: synthesis and interactions at interfaces, Langmuir, 15 (2), 447-53, 1999.

Shen, X.C., X.Z. Fang, Y.H. Zhou, and H. Liang, Synthesis and characterization of 3-aminopropyltriethoxysilane-modified superparamagnetic magnetite nanoparticles, Chem. Lett, 33 (11), 1468-1469, 2004.

Shen, X.P., H.J. Liu, L. Pan, K.M. Chen, J.M. Hong, and Z. Xu, An efficient template pathway to synthesis of ordered metal oxide nanotube arrays using metal acetylacetonates as single-source molecular precursors, Chem. Lett, 33 (9), 1128-1129, 2004.

Shen, Z.Y., H.L. Chen, D. Fang, J.H. Ding, S.B. Zhang, Z.B. Huang, and M. Li, Paleomagnetic results of the Cretaceous marine sediments in Tongyrouluke, southwest, Tarim, Sci. China Ser. D-Earth Sci, 48 (3), 406-416, 2005.

Shenoy, S.D., P.A. Joy, and M.R. Anantharaman, Effect of mechanical milling on the structural, magnetic and dielectric properties of coprecipitated ultrafine zinc ferrite, J. Magn. Magn. Mater., 269 (2), 217-26, 2004.

Sheppard, C.M., and K.J.D. MacKenzie, Silicothermal synthesis and densification of X-sialon in the presence of metal oxide additives, Journal of the European Ceramic Society, 19 (5), 535-41, 1999.

Shergold, J.H., Review of trilobite biofacies distributions at the cambrian-ordovician boundary, Geol. Mag., 125 (4), 363, 1988.

Sheriff, S.D., Paleomagnetism of the Hog Heaven volcanic field, Nevada: difficulties in averaging paleosecular variation in volcanic fields, Geophys. Res. Lett., 16, 1359–1362, 1989.

Sherwood, G.J., and S.B. Mallik, Magnetic mineralogy of the lower Gondwana formations of INdia - preliminary results from the Damodar Valley, Geologica Carpathika, 44 (5), 339-343, 1993.

Sherwood, G.J., and J. Shaw, The relationship between magnetic field strength and reversal frequency: preliminary palaeointensity results from the Cretaceous Quiet Zone, Stud. Geophys. Geod., 35, 325–333, 1991.

Sheth, H.C., Comments on 'Generation of Deccan Trap magmas' by Gautam Sen, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 111 (4), 483-5, 2002.

Shi, C.D., R.X. Zhu, V. Suchy, A. Zeman, B. Guo, and Y.X. Pan, Identification and origins of iron sulfides in Czech loess, Geophys. Res. Lett., 28 (20), 3903-6, 2001.

Shi, G.M., Z.D. Zhang, and H.C. Yang, Al2O3/Fe2O3 composite-coated polyhedral Fe nanoparticles prepared by arc discharge, J. Alloys Compounds, 384, 1-2, 2004.

Shi, H., and D.H. Tarling, The origin of bore-core remanences: mechanical-shock-imposed irreversible magnetizations, Geophys. J. Int., 137 (3), 831-8, 1999.

Shi, K.Y., Y.J. Chi, H.T. Yu, B.F. Xin, and H.G. Fu, Controlled growth of mesostructured crystalline iron oxide nanowires and Fe-filled carbon nanotube arrays templated by mesoporous silica SBA-16 film, J. Phys. Chem. B, 109 (7), 2546-2551, 2005.

Shi, K.Y., B.F. Xin, Y.J. Chi, and H.G. Fu, Assembling porous Fe2O3 nanowire arrays by electrochemical deposition in mesoporous silica SBA-16 films, Acta Chim. Sin, 62 (19), 1859-1861, 2004.

Shi, L.J., and B.G. Liu, Half-metallic zinc-blende pnictides in real environments, Journal of Physics-Condensed Matter, 17 (7), 1209-1216, 2005.

Shi, Y., J. Ding, S.L.H. Tan, and Z. Hu, Ni/ Fe2O3 magnetic composite synthesized by mechanical alloying, J. Magn. Magn. Mater., 256 (1), 13-19, 2003.

Shibata, J., G. Tatara, H. Kohno, and Y. Otani, Current-induced domain nucleation in ferromagnet, IEEE Trans. Magn., 41 (10), 2595-2597, 2005.

Shibayama, A., and T. Otomo, Preparation and abrasion properties of magneto-rheological fluid of dispersed silica-coated iron, Int. J. Mod. Phys. B., 19 (7-9 Part 1 Special Issue SI), 1121-1127, 2005.

Shibuya, H., J. Cassidy, I.E.M. Smith, and T. Itaya, A geomagnetic excursion in the Brunhes epoch recorded in New Zealand basalts, Earth Planet. Sci. Lett., 111, 41-48, 1992.

Shieh, D.B.D.B., C.S.C.S. Yeh, F.Y.F.Y. Cheng, C.H.C.H. Su, M.T.M.T. Wu, Y.N.Y.N. Wu, C.Y.C.Y. Tsai, C.L.C.L. Wu, D.H.D.H. Chen, and C.H.C.H. Chou, Aqueous dispersions of magnetite nanoparticles with NH3+ surfaces for magnetic manipulations of biomolecules and MRI contrast agents, Biomaterials, 26 (34), 7183-91, 2005.

Shilov, V.P., J.C. Bacri, F. Gazeau, F. Gendron, R. Perzynski, and Y.L. Raikher, Ferromagnetic resonance in ferrite nanoparticles with uniaxial surface anisotropy, J. Appl. Phys., 85 (9), 6642-7, 1999.

Shilton, V.F., C.A. Booth, J.P. Smith, P. Giess, D.J. Mitchell, and C.D. Williams, Magnetic properties of urban street dust and their relationship with organic matter, content in the West Midlands, UK, Atmos. Environ, 39 (20), 3651-3659, 2005.

Shima, M., T. Tepper, and C.A. Ross, Magnetic properties of chromium oxide and iron oxide films produced by pulsed laser deposition, J. Appl. Phys., 91 (10), 7920-2, 2002.

Shima, T., K. Takanashi, Y.K. Takahashi, and K. Hono, Coercivity exceeding 100 kOe in epitaxially grown FePt sputtered films, Appl. Phys. Lett., 85 (13), 2571-2573, 2004.

Shimada, K., Y. Akagami, T. Fujita, T. Miyazaki, S. Kamiyama, and A. Shibayama, Characteristics of magnetic compound fluid (MCF) in a rotating rheometer, J. Magn. Magn. Mater., 252 (1), 235-7, 2002.

Shimada, K., and H. Oka, Magnetic characteristics of magnetic compound fluid (MCF) under DC and AC magnetic fields, J. Magn. Magn. Mater., 290 (S0304), 01631-2, 2005.

Shimatsu, T., T. Oikawa, Y. Inaba, H. Sato, I. Watanabe, H. Aoi, H. Muraoka, and Y. Nakamura, Thickness reduction in CoPtCr-SiO2 perpendicular recording media to improve media performance, IEEE Trans. Magn., 40 (4 Part 2), 2461-2463, 2004.

Shimatsu, T., H. Sato, T. Oikawa, Y. Inaba, O. Kitakami, S. Okamoto, H. Aoi, H. Muraoka, and Y. Nakamura, High perpendicular magnetic anisotropy of CoPtCr/Ru films for granular-type perpendicular media, IEEE Trans. Magn., 40 (4 Part 2), 2483-2485, 2004.

Shimizu, Y., Magnetic viscosity of magnetite, J. Geomagn. Geoelec., 11, 125–138, 1960.

Shinagawa, T., M. Izaki, Y. Matsumura, K. Murase, and Y. Awakura, Transparent ferromagnetic semiconductor Fe-Zn-O heterogranular films, Electrochem. Solid State Lett, 7 (10), G235-G237, 2004.

Shinba, Y., T.J. Konno, K. Ishikawa, K. Hiraga, and M. Sagawa, Transmission electron microscopy study on Nd-rich phase and grain boundary structure of Nd-Fe-B sintered magnets - art. no. 053504, J. Appl. Phys., 97 (5), 53504, 2005.

Shinde, S.R., S.D. Kulkarni, A.G. Banpurkar, R. Nawathey-Dixit, S.K. Date, and S.B. Ogale, Magnetic properties of nanosized powders of magnetic oxides synthesized by pulsed laser ablation, J. Appl. Phys., 88 (3), 1566-75, 2000.

Shine, K.P., Southern hemisphere temperature trends - A possible greenhouse effect - Comment, Geophys. Res. Lett., 15 (8), 843, 1988.

Shinoda, K., B. Jeyadevan, M. Kasai, I. Nakatani, H. Oka, and K. Tohji, Characterization of inherent clusters in water-based magnetite magnetic fluid, J. Magn. Magn. Mater., 252 (1), 141-3, 2002.

Shipunov, S.V., Synfolding magnetization: detection, testing and geological applications, Geophys. J. Int., 130 (2), 405-10, 1997.

Shipunov, S.V., Tests of significance in paleomagnetism, Izvestiya, Physics of the Solid Earth, 35 (6, p.518), 89-92, 1999.

Shipunov, S.V., The conglomerate test in paleomagnetism: The clusterization analysis, Izvestiya, Physics of the Solid Earth, 38 (5), 412-17, 2002.

Shipunov, S.V., and Y.S. Bretshtein, Problems of component analysis in paleomagnetism, Izvestiya, Physics of the Solid Earth, 35 (3, p.210), 51-61, 1999.

Shipunov, S.V., and A.A. Muravev, Sensitivity and reliability of the fold test in paleomagnetism, Izvestiya, Physics of the Solid Earth, 36 (7), 532-8, 2000.

Shipunov, S.V., A.A. Muraviev, and M.L. Bazhenov, A new conglomerate test in palaeomagnetism, Geophys. J. Int., 133 (3), 721-5, 1998.

Shirane, G., D.E. Cox, W.J. Takei, and S.L. Ruby, A study of the magnetic properties of the FeTiO3-Fe2O3 system by neutron diffraction and the Mössbauer effect, J. Phys. Soc. Jpn., 17, 1598–1611, 1962.

Shiratsuchi, Y., Y. Endo, and M. Yamamoto, Thickness dependence of magnetic state of Fe thin films grown on Al2O3(0001) substrates with an inclined angle, Sci. Technol. Adv. Mater, 5 (1-2), 73-78, 2004.

Shiratsuchi, Y., Y. Endo, and M. Yamamoto, Transition from superparamagnetic to ferromagnetic state of ultrathin Fe films grown on inclined Al2O3(0001) substrates, Thin Sol. Films, 65, 141-145, 2004.

Shirman, B., and B. Ginzburg, Influence of local field inhomogeneity on the accuracy of precise total magnetic field monitoring, Measurement Science & Technology, 15 (12), 2370-2374, 2004.

Shiroishi, H., T. Oda, I. Hamada, and N. Fujima, Structure and magnetism on iron oxide clusters FenOm (n=1-5): Calculation from first principles, European Physical Journal D, 24 (1-3), 85-88, 2003.

Shive, P.N., Suggestions for the use of SI units in magnetism, Eos Trans. Am. Geophys. Union, 67, 25, 1986.

Shive, P.N., Can remanent magnetization in the deep crust contribute to long wavelength magnetic anomalies?, Geophys. Res. Lett., 16, 89–92, 1989.

Shive, P.N., Rock magnetism, Rev. Geophys. Space Phys., 21, 665-671, 1983.

Shive, P.N., and J.F. Diehl, Reduction of hematite to magnetite under natural and laboratory conditions, J. Geomagn. Geoelectr., 29, 345–354, 1977.

Shive, P.N., and D.M. Fountain, Magnetic mineralogy in an Archean crustal section: implications for crustal magnetization, J. Geophys. Res. B, 93, 12,177–12,186, 1988.

Shive, P.N., B.R. Frost, and A. Peretti, The magnetic properties of metaperidotitic rocks as a function of metamorphic grade: implications for crustal magnetic anomalies, J. Geophys. Res. B, 93, 12187–12195, 1988.

Sholpo, L.Y., A.K. Gapeev, and G.P. Borisova, Influence of grain size of titanomagnetite on course of its oxidation and magnetization processes with temperature increase, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 29, 795–801 (in Engl. transl.), 1992.

Shove, D.J., Tree-ring and varve scales combined, c. 13500 B.C. to A.D. 1977, Palaeogeogr. Palaeoclimatol. Palaeoecol., 25, 209–233, 1978.

Shreider, A.A., Linear magnetic anomalies in the Arctic Ocean, Oceanology, 44 (5), 721-729, 2004.

Shreyder, A.A., Magnetism of the oceanic lithosphere and linear paleomagnetic anomalies, Izv. Akad. Nauk SSSR Ser. Fiz. Zemli (Phys. Solid Earth), 28, 502–510 (in Engl. transl.), 1992.

Shuey, R.T., R.O. Ugland, and C.R. Schmit, Magnetic properties and secular variation in cores from Yellowstone and Jackson Lakes, Wyoming, J. Geophys. Res., 82, 3739–3746, 1977.

Shukla, A.D., N. Bhandari, S. Kusumgar, P.N. Shukla, Z.G. Chievariya, K. Gopalan, and A. Balaram, Geochemistry and magnetostratigraphy of Deccan flows at Anjar, Kutch, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 110 (2), 111-32, 2001.

Shukla, A.D., and P.N. Shukla, Comments on 'No K/T boundary at Anjar, Gujarat, India: evidence from magnetic susceptibility and carbon isotopes' by H J Hansen, D M Mohabey and P Toft, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 111 (4), 489-97, 2002.

Shuster, D.L., P.M. Vasconcelos, J.A. Heim, and K.A. Farley, Weathering geochronology by (U-Th)/He dating of goethite, Geochim. Cosmochim. Acta, 69 (3), 659-673, 2005.

Shuyi, C., F. Jian, G. Xuefeng, H. Jianming, and D. Weiping, One-step wet chemistry for preparation of magnetite nanorods, Mater. Lett, 59, 8-9, 2005.

Shvedenkov, Y., M. Bushuev, G. Romanenko, L. Lavrenova, V. Ikorskii, P. Gaponik, and S. Larionov, Magnetic anisotropy of new layered copper(II) bromide complexes of 1-substituted tetrazoles, Eur. J. Inorg. Chem (9), 1678-1682, 2005.

Shvets, I.V., G. Mariotto, K. Jordan, N. Berdunov, R. Kantor, and S. Murphy, Long-range charge order on the Fe3O4(001) surface - art. no. 155406, Physical Review B, 7015 (15), 5406, 2004.

Shvets, I.V., G. Mariotto, K. Jordan, N. Berdunov, R. Kantor, and S. Murphy, Long-range charge order on the Fe3O4(001) surface, Physical Review B, 70 (15), 155406-1, 2004.

Shvets, I.V., R. Wiesendanger, D. Burgler, G. Tarrach, H.-J. Guntherodt, and J.M.D. Coey, Progress towards spin-polarized scanning tunneling microscopy, J. Appl. Phys., 71, 5489–5499, 1992.

Si, S., A. Kotal, T.K. Mandal, S. Giri, H. Nakamura, and T. Kohara, Size-controlled synthesis of magnetite nanoparticles in the presence of polyelectrolytes, Chem. Mat, 16 (18), 3489-3496, 2004.

Si, S.F., C.H. Li, X. Wang, D.P. Yu, Q. Peng, and Y.D. Li, Magnetic monodisperse Fe3O4 nanoparticles, Cryst. Growth Des, 5 (2), 391-393, 2005.

Sibuet, J.C., Northeast Atlantic passive margins - Paleoconstraints during rifting, Bull. Soc. Geol. Fr, 4 (4), 515, 1988.

Sichu, L., V.T. John, S.H. Rachakonda, G.C. Irvin, G.L. McPherson, and C.J. O'Connor, Higher crystallinity superparamagnetic ferrites: Controlled synthesis in lecithin gels and magnetic properties, J. Appl. Phys., 85 (8), 5178-80, 1999.

Siddans, A.W.B., B. Henry, R. Kligfield, W. Lowrie, A. Hirt, and M.N. Percevault, Finite strain patterns and their significance in Permian rocks of the Alpes Maritmes (France), J. Struct. Geol., 6, 339-368, 1984.

Sidhu, P.S., R.J. Gilkes, and A.M. Posner, Mechanism of the low temperature oxidation of synthetic magnetites, J. Inorg. Nucl. Chem., 39, 1953–1958, 1977.

Sidman, D., E.C. Ferre, C. Teyssier, and M. Jackson, Magnetic fabric and microstructure of a mylonite: example from the Bitterroot shear zone, western Montana, High-Strain Zones: Structure and Physical Properties, 245 (245), 143-163, 2005.

Sieh, K., 84-90.

Siemes, H., B. Klingenberg, E. Rybacki, M. Naumann, W. Schafer, E. Jansen, and C.A. Rosiere, Texture, microstructure, and strength of hematite ores experimentally deformed in the temperature range 600-1100 degrees C and at strain rates between 10(-4) and 10(-6)S(-1), J. Struct. Geol., 25 (9), 1371-1391, 2003.

Sierra, F., C. McCabe, and A.J. Schedl, The origin of remagnetization in the Onondaga limestone at Leeds Gorge, New York—constraints from a study of calcite strain and magnetic fabric, Eos Trans. Am. Geophys. Union, 70, 719, 1989.

Sige, B., T. Sempere, R.F. Butler, L.G. Marshall, and J.Y.S. Crochet, Age and stratigraphic reassessment of the fossil-bearing Laguna Umayo red mudstone unit, SE Peru, from regional stratigraphy, fossil record, and paleomagnetism, Geobios, 37 (6), 771-794, 2004.

Silberling, N.J., K.M. Nichols, J.D. Bradshaw, and C.D. Blome, Limestone and chert in tectonic blocks from the Esk Head subterrane, South-Island, New-Zealand, Geol. Soc. Am. Bull., 100 (8), 1213, 1988.

Siles-Dotor, M.G., Bokhimi, A. Morales, M. Benaissa, and A. Cabral-Prieto, Synthesis of nanostructured goethite and magnetite particles from the oxidation of Fe(OH)2 in a high-oxygen-flow-rate medium, Nanostruct. Mater., 8 (6), 657-73, 1997.

Silva, O., and P.C. Morais, Investigation of anisotropy in cadmium ferrite-based ionic magnetic fluid using magnetic resonance, Journal of Magnetism & Magnetic Materials, 289, 136-138, 2005.

Silva, P.F., F.O. Marques, B. Henry, A. Mateus, N. Lourenco, and J.M. Miranda, Preliminary results of a study of magnetic properties in the Foum-Zguid dyke (Morocco), Physics & Chemistry of the Earth, 29 (13-14), 909-920, 2004.

Silveira, L.B., J.G. Santos, F. Pelegrini, C. Gansau, N. Buske, and P.C. Morais, Magnetic resonance study of zero-field-frozen magnetite-based biocompatible magnetic fluid, IEEE Trans. Magn., 39 (5), 2642-4, 2003.

Simmons, B., L. Sichu, V.T. John, G.L. McPherson, C. Taylor, D.K. Schwartz, and K. Maskos, Spatial compartmentalization of nanoparticles into strands of a self-assembled organogel, Nano Lett, 2 (10), 1037-42, 2002.

Simmons, S.L., S.M. Sievert, R.B. Frankel, D.A. Bazylinski, and K.J. Edwards, Spatiotemporal distribution of marine magnetotactic bacteria in a seasonally stratified coastal salt pond, Appl. Environ. Microbiol, 70 (10), 6230-6239, 2004.

Simon, A.C., T. Pettke, P.A. Candela, P.M. Piccoli, and C.A. Heinrich, Magnetite solubility and iron transport in magmatic-hydrothermal environments, Geochim. Cosmochim. Acta, 68 (23), 4905-4914, 2004.

Simon, S., D. Eniu, A. Pasca, D. Dadarlat, and V. Simon, EPR and photopyroelectric investigations of Fe2O3-CaO-P2O5-SiO2 glass and glass-ceramic systems, Modern Physics Letters B, 15 (21), 921-8, 2001.

Simon, V., D. Eniu, M. Neumann, and S. Simon, Heat treatment effect on CaO-P2O5-SiO2-Fe2O3 glass-ceramics structure, Int. J. Mod. Phys. B., 18 (15), 2215-2221, 2004.

Simon, V., R. Pop, M. Neumann, S.G. Chiuzbaian, M. Coldea, and S. Simon, Iron oxidation states and distribution in the 4Bi2O3.PbO glass matrix, Modern Physics Letters B, 16 (1), 41-6, 2002.

Simon, V., R. Pop, and N.N. Puscas, Iron influence on optical and magnetic properties of lead-bismuthate glasses, Modern Physics Letters B, 17, 5-6, 2003.

Sims, P.K., and G.B. Morey, Geology of Minnesota; a Centennial Volume, Minnesota Geological Survey, Saint Paul, 1972.

Sincai, M., L. Deleanu, D. Argherie, and D. Bica, The effects of magnetic fluids on blood parameters in dogs, J. Magn. Magn. Mater., 252 (1), 406-8, 2002.

Singer, A., The paleoclimatic interpretation of clay minerals in soils and weathering profiles, Earth Sci. Rev., 15, 303–326, 1980.

Singer, A., The paleoclimatic interpretation of clay minerals in sediments—a review, Earth Sci. Rev., 21, 251–293, 1984.

Singer, B., and L. Brown, The Santa Rosa Event: 40Ar/39Ar and paleomagnetic results from the Valles rhyolite near Jaramillo Creek, Jemez Mountains, New Mexico, Earth Planet. Sci. Lett., 197 (1-2), 51-64, 2002.

Singer, B.S., K.A. Hoffman, A. Chauvin, R.S. Coe, and M.S. Pringle, Dating transitionally magnetized lavas of the late Matuyama Chron: toward a new 40Ar/39Ar timescale of reversals and events, J. Geophys. Res., 104 (B1), 679-93, 1999.

Singer, B.S., K.A. Hoffman, R.S. Coe, L.L. Brown, B.R. Jicha, M.S. Pringle, and A. Chauvin, Structural and temporal requirements for geomagnetic field reversal deduced from lava flows, Nature, 434 (7033), 633-636, 2005.

Singer, M.J., L.H. Bowen, K.L. Verosub, P. Fine, and J. TenPas, Mössbauer spectroscopic evidence for citrate-bicarbonate-dithionate extraction of maghemite from soils, Clays Clay Miner., 43 (1), 1-7, 1995.

Singer, M.J., and P. Fine, Pedogenic factors affecting magnetic susceptibility of northern California soils, Soil Sci. Soc. Am. J., 53, 1119–1127, 1989.

Singer, M.J., P. Fine, K.L. Verosub, and O.A. Chadwick, Time dependence of magnetic susceptibility of soil chronosequences on the California coast, Quat. Res., 37, 323–332, 1992.

Singer, M.J., and P. Janitzky, Field and laboratory procedures used in a soil chronosequence study, U. S. Geol. Surv. Bull., 1648, 1–49, 1986.

Singer, M.J., K.L. Verosub, J. TenPas, and P. Fine, Identification of pedogenic magnetic carriers in soils with citrate-bicarbonate-dithionite (abstract), Eos Trans. Am. Geophys. Union, 73, no. 43 suppl., 137, 1992.

Singer, S., and M. Pringle, Age and duration of the Matuyama-Brunhes geomagnetic polarity reversal from 40Ar/39Ar incremental heating analyses of lavas, Earth Planet. Sci. Lett., 139, 47-61, 1996.

Singh, A., R. Tamm, V. Neu, S. Fahler, C.G. Oertel, W. Skrotzki, L. Schultz, and B. Holzapfel, Epitaxial growth of highly coercive Sm-Co thin films using pulsed laser deposition - art. no. 093902, J. Appl. Phys., 97 (9), 93902, 2005.

Singh, J., D.J. Anderson, and D.H. Tarling, The magnetic susceptibility anisotropy of deformed rocks from north Cornwall, England, Tectonophys., 27, 141–153, 1975.

Singh, S.P., Sedimentation patterns of the proterozoic Delhi supergroup, northeastern Rajasthan, India, and their tectonic implications, Sed. Geol., 58 (1), 79, 1988.

Singhal, S., A.N. Garg, and K. Chandra, Synthesis of nanocrystalline Ni0.5Zn0.5Fe2O4 by aerosol route and its characterization, Hyperfine Interact., 156 (1), 97-102, 2004.

Singhvi, A.K., A. Bluszcz, M.D. Bateman, and M.S. Rao, Luminescence dating of loess-paleosol sequences and coversands: methodological aspects and paleoclimatic implications, Earth-Science Reviews, 54, 193-211, 2001.

Sinha, A., J. Chakraborty, P.A. Joy, and P. Ramachandrarao, Magnetic field-induced biomimetic synthesis of superparamagnetic poly (vinyl alcohol)-maghemite composite, J. Mater. Res., 19 (6), 1676-81, 2004.

Sinha, A., J. Chakraborty, S. Kumar Das, S. Das, V. Rao, and P. Ramachandrarao, Oriented arrays of nanocrystalline magnetite in polymer matrix produced by biomimetic synthesis, Mater. Trans, 42 (8), 1672-5, 2001.

Sinha, A., S. Nayar, G.V.S. Murthy, P.A. Joy, V. Rao, and P. Ramachandrarao, Biomimetic synthesis of superparamagnetic iron oxide particles in proteins, J. Mater. Res., 18 (6), 1309-1313, 2003.

Sinha, T.P., M. Mukherjee, D. Chakravorty, and M. Bhattacharya, Mössbauer study of nanocomposite Fe2O3-SiO2 prepared by sol-gel method, Indian Journal of Physics, Part A, 70A (6), 741-746, 1996.

Sinito, A.M., Models of geomagnetic secular variations on recent times for South America, Phys. Earth Planet. Inter., 64, 133–142, 1990.

Sinito, A.M., and H.J. Nunez, Palaeosecular variation recorded on lake sediments from South Argentina, J. Geomagn. Geoelectr., 49 (4), 473-83, 1997.

Sinito, A.M., and J.F. Vilas, Model of geomagnetic paleosecular variation for the Northern Hemisphere, Stud. Geophys. Geod., 35, 334–343, 1991.

Sipkin, S.A., Estimation of the attenuation operator for multiple-SCS waves using digitally recorded broadband data, Geophys. Res. Lett., 15 (8), 832, 1988.

Siratori, K., Y. Ishii, Y. Morii, S. Funahashi, and A. Yanase, Diffuse neutron scattering of the high temperature phase of Fe3O4, J. Phys. IV, 7 (C1), 585-6, 1997.

Sirokko, F., M. Sarnthein, H. Erlenkeuser, H. Lange, M. Arnold, and J.C. Duplessy, Century-scale events in monsoonal climate over the past 24,000 years, Nature, 364, 322-324, 1993.

Sivakumar, M., and A. Gedanken, Insights into the sonochemical decomposition of Fe(CO)(5): theoretical and experimental understanding of the role of molar concentration and power density on the reaction yield, Ultrason. Sonochem, 11 (6), 373-378, 2004.

Sivakumar, M., A. Gedanken, W. Zhong, Y.W. Du, D. Bhattacharya, Y. Yeshurun, and I. Felner, Nanophase formation of strontium hexaferrite fine powder by the sonochemical method using Fe(CO)5, J. Magn. Magn. Mater., 268 (1-2), 95-104, 2004.

Skilbrei, J., T. Skyseth, and O. Olesen, Petrophysical data and opaque mineralogy of high-grade and retrogressed lithologies: implications for the interpretation of aeromagnetic anomalies in northern Vestranden, Central Norway, Tectonophys., 192, 21–31, 1991.

Skinner, A.C., and D.M. Gregory, Quaternary stratigraphy in the northern North Sea, Boreas, 12, 145-152, 1983.

Skinner, B.J., R.C. Erd, and F.S. Grimaldi, Greigite, the thio-spinel of iron; a new mineral, Am. Mineral., 49, 543–553, 1964.

Skomski, R., J. Zhou, A. Kashyap, and D.J. Sellmyer, Domain-wall pinning at inhomogenities of arbitrary cross-sectional geometry, IEEE Trans. Magn., 40 (4 Part 2), 2946-2948, 2004.

Skorvanek, I., and V. Wagner, A neutron depolarization study of low temperature magnetic hardening in Fe-Nb-Cr-B-Cu nanocrystalline alloys, Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process, 375-77 (Special Issue SI), 1133-1136, 2004.

Skumiel, A., and T. Hornowski, Ultrasonic evaluation of the size of clusters in a magnetic fluid, Acoustics Letters, 20 (6), 121-8, 1996.

Skumryev, V., H.J. Blythe, J. Cullen, and J.M.D. Coey, AC susceptibility of a magnetite crystal, J. Magn. Magn. Mater., 196 (S0304), 863-864, 1999.

Skumryev, V., H.J. Blythe, J. Cullen, and J.M.D. Coey, AC susceptibility of magnetite crystal, J. Magn. Magn. Mater., 196-197, 515-517, 1999.

Slawska-Waniewska, A., A. Roig, M. Gich, L. Casas, K. Racka, N. Nedelko, and E. Molins, Effect of surface modifications on magnetic coupling in Fe nanoparticle systems - art. no. 054412, Physical Review B, 7005 (5), 4412, 2004.

Slawska-Waniewska, A., A. Roig, M. Gich, L. Casas, K. Racka, N. Nedelko, and E. Molins, Effect of surface modifications on magnetic coupling in Fe nanoparticle systems, Physical Review B, 70 (5), 054412, 2004.

Sleep, N.H., A. Meibom, T. Fridriksson, R.G. Coleman, and D.K. Bird, H-2-rich fluids from serpentinization: Geochemical and biotic implications, PNAS, 101 (35), 12818-12823, 2004.

Slobodkin, A.I., N.I. Chistyakova, and V.S. Rusakov, High-temperature microbial sulfate reduction can be accompanied by magnetite formation, Microbiology-(UK), 73 (4), 469-473, 2004.

Slonczewski, J.C., Theory of surface anisotropy and coercivity in ferrimagnetic -Fe2O3, J. Magn. Magn. Mater., 117, 368–378, 1992.

Slugen, V., J. Lipka, I. Toth, J.H. Hascik, M. Lehota, and I. Smiesko, Application of Mossbauer spectroscopy in phase analysis of corrosion products from nuclear power plants, Czech. J. Phys, 51 (9), 909-16, 2001.

Smalley, I., Making the material: the formation of silt-sized primary mineral particles for loess deposits, Quat. Sci. Rev., 14, 645-651, 1995.

Smart, N.R., and D.J. Blackwood, Anaerobic corrosion of carbon steel and cast iron in artificial groundwaters. 2. Gas generation, Corrosion, 58 (8), 627-37, 2002.

Smedley, P.L., D.G. Kinniburgh, D.M.J. Macdonald, H.B. Nicolli, A.J. Barros, J.O. Tullio, J.M. Pearce, and M.S. Alonso, Arsenic associations in sediments from the loess aquifer of La Pampa, Argentina, Appl. Geochem, 20 (5), 989-1016, 2005.

Smethurst, M.A., and A.N. Khramov, A new Devonian palaeomagnetic pole for the Russian platform and Baltica, and related apparent polar wander, Geophys. J. Int., 108, 179-192, 1992.

Smethurst, M.A., A.N. Khramov, and S. Pisarevsky, Palaeomagnetism of the Lower Ordovician orthoceras, Geophys. J. Int., 133 (1), 44-56, 1998.

Smirnov, A.V., Memory of the magnetic field applied during cooling in the low-temperature phase of magnetite: Grain-size dependence, J. Geophys. Res., doi10.1029/2006JB004573, in press, this volume.

Smirnov, A.V., and J. A. Tarduno, Low-temperature magnetic properties of pelagic sediments (ODP site 805C): Tracers of maghemitization and magnetic mineral reduction, J. Geophys. Res. B, 105, 16457-16472, 2000.

Smirnov, A.V., and J.A. Tarduno, Magnetic field control of the low-temperature magnetic properties of stoichiometric and cation-deficient magnetite, Earth Planet. Sci. Lett., 194 (3), 359-368, 2002.

Smirnov, A.V., and J.A. Tarduno, Magnetic hysteresis monitoring of Cretaceous submarine basaltic glass during Thellier paleointensity experiments: evidence for alteration and attendant low field bias, Earth Planet. Sci. Lett., 206 (3-4), 571-585, 2003.

Smirnov, A.V., and J.A. Tarduno, Secular variation of the Late Archean Early Proterozoic geodynamo - art. no. L16607, Geophys. Res. Lett., 31 (16), 16607, 2004.

Smirnov, A.V., and J.A. Tarduno, Secular variation of the Late Archean-Early Proterozoic geodynamo, Geophys. Res. Lett., 31 (16), L16607 1-4, 2004.

Smirnov, A.V., and J.A. Tarduno, Low-temperature magnetic properties of pelagic sediments (Ocean Drilling Program Site 805C): tracers of maghemitization and magnetic mineral reduction, J. Geophys. Res., 105 (B7), 16457-71, 2000.

Smirnov, A.V., and J.A. Tarduno, Estimating superparamagnetism in marine sediments with the time dependency of coercivity of remanence, J. Geophys. Res., 106 (B8), 16135-43, 2001.

Smirnov, A.V., and J.A. Tarduno, Estimating supeparamagnetism in marine sediments with the time dependency of coercivity of remanence, J. Geophys. Res. B, 106 (8), 16135-16143, 2001.

Smirnov, A.V., and J.A. Tarduno, Thermochemical remanent magnetization in Precambrian rocks: Are we sure the geomagnetic field was weak? - art. no. B06103, J Geophys Res-Sol Ea, 110 (B6), 6103, 2005.

Smirnov, A.V., J.A. Tarduno, and W.S. Goree, Directional Behavior of Remanent Magnetization at Low Temperatures Measured With a New SQUID Magnetometer Probe, Eos Trans. Am. Geophys. Union, 85 (47, Fall Meet. Suppl.), Abstract GP22A-04, 2004.

Smirnov, A.V., J.A. Tarduno, and B.N. Pisakin, Paleointensity of the early geodynamo (2.45 Ga) as recorded in Karelia: A single-crystal approach, Geology, 31 (5), 415-418, 2003.

Smirnov, P., F. Gazeau, M. Lewin, J.C. Bacri, N. Siauve, C. Vayssettes, C.A. Cuenod, and O. Clement, In vivo cellular imaging of magnetically labeled hybridomas in the spleen with a 1.5-T clinical MRI system, Magnetic Resonance in Medicine, 52 (1), 73-9, 2004.

Smit, J., and F.T. Kyte, Siderophile-rich magnetic spheroids from the Cretaceous-Tertiary boundary in Umbria, Italy, Nature, 310, 403–405, 1984.

Smit, J., and H.P.J. Wijn, Ferrites, 369 pp., John Wiley & Sons, New York, 1959.

Smith, A.B., Magnetic domain observations in thin-film heads using Kerr microscopy, Dig. Tech. J., No. 8, 74–80, 1989.

Smith, A.G., A.M. Hurley, and J.C. Briden, Paläokontinentale Weltkarten des Phanerozoikums, 102 pp., Enke Verlag, Stuttgart, 1982.

Smith, B., Magnetic viscosity of some doleritic basalts in relation to the interpretation of the oceanic magnetic anomalies, Geophys. Res. Lett., 11, 213–216, 1984.

Smith, B., A. Bonneville, and R. Hamzaoui, Flow duration of a dyke constrained by palaeomagnetic data, Geophys. J. Int., 106, 621–634, 1991.

Smith, B.M., Consequences of the maghemitization of the magnetic properties of submarine basalts: synthesis of previous works and results concerning basement rocks from mainly DSDP legs 51 and 52, Phys. Earth Planet. Inter., 46, 206–226, 1987.

Smith, B.M., and U. Bleil, Rock magnetism of basement rocks, deep sea drilling site 417, in Init. Repts. DSDP, edited by T. Donnelly, J. Francheteau, W. Bryan, P. Robinson, M. Flower, and M. Salisbury, pp. 1379–1389, U. S. Government Printing Office, Washington, 1980.

Smith, C.B., K. Sims, L. Chimuka, A. Duffin, A.D. Beard, and R. Townend, Kimberlite metasomatism at Murowa and Sese pipes, Zimbabwe, Lithos, 76 (1-4), 219-232, 2004.

Smith, C.J., M. Field, C.J. Coakley, D.D. Awschalom, N.H. Mendelson, E.L. Mayes, S.A. Davis, and S. Mann, Organizing nanometer-scale magnets with bacterial threads, IEEE Trans. Magn., 34 (4, pt.1), 988-90, 1998.

Smith, D.A., Y.A. Barnakov, B.L. Scott, S.A. White, and K.L. Stokes, Magneto-optical spectra of closely spaced magnetite nanoparticles - art. no. 10M504, J. Appl. Phys., 97 (10 Part 3), M504, 2005.

Smith, G., Late glacial paleomagnetic secular variations from France, Ph. D. Dissertation thesis, University of Edinburgh, 1985.

Smith, G., and K.M. Creer, Analysis of geomagnetic secular variations 10,000 to 30,000 years bp, Lac du Bouchet, France, Phys. Earth Planet. Inter., 44, 1-14, 1986.

Smith, G., and R.T. Merrill, The origin of rotational remanent magnetization, Geophys. J. R. Astr. Soc., 61, 329–336, 1980.

Smith, G.M., The magnetic structure of the marine basement, CRC Crit. Rev. Aquat. Sci., 2, 205–227, 1990.

Smith, G.M., A new approach to the theory of single domain TRM, Geophys. Res. Lett., 11, 201–204, 1984.

Smith, G.M., The growth of Fe-Ti oxides: phase relations in the Fe-Ti-B-O system, Geophys. Res. Lett., 15, 495–498, 1988.

Smith, G.M., and S.K. Banerjee, Magnetic properties of basalts from Deep Sea Drilling Project leg 83: the origin of remanence and its relation to tectonic and chemical evolution, in Init. Repts. DSDP, edited by R.N. Anderson, J. Honnorez, and K. Becker, pp. 347–357, U. S. Government Printing Office, Washington, 1985.

Smith, G.M., and S.K. Banerjee, Magnetic properties of basalts from the central North Atlantic Ocean, in Init. Repts. DSDP, edited by H. Bougault, and S.C. Cande, pp. 369–375, U. S. Government Printing Office, Washington, 1985.

Smith, G.M., and S.K. Banerjee, Magnetic properties of plutonic rocks from the central North Atlantic Ocean, in Init. Repts. DSDP, edited by H. Bougault, and S.C. Cande, pp. 377–383, U. S. Government Printing Office, Washington, 1985.

Smith, G.M., and S.K. Banerjee, Magnetic structure of the upper kilometer of the marine crust at DSDP hole 504B, eastern Pacific Ocean, J. Geophys. Res. B, 91, 10,337–10,354, 1986.

Smith, G.M., and S.K. Banerjee, The dependence of weak field susceptibility on applied magnetic field, Phys. Earth Planet. Inter., 46, 71–76, 1987.

Smith, G.M., and S.L. Halgedahl, Recent advances in fine particle magnetism: implications for paleomagnetism, Rev. Geophys., 25, 900–904, 1987.

Smith, G.M., and R.T. Merrill, The determination of the internal field in magnetic grains, J. Geophys. Res. B, 87, 9419–9423, 1982.

Smith, G.M., and R.T. Merrill, Domain wall resonance and stability in magnetite, J. Geophys. Res. B, 88, 637–644, 1983.

Smith, J., P. Toms, M. King, M. Zárate, D. Vance, R.A. Kemp, and C. Archer, Isotopic constraints on the source of Argentinian loess - With implications for atmospheric circulation and the provenance of Antarctic dust during recent glacial maxima, Earth Planet. Sci. Lett., 212 (1-2), 181-196, 2003.

Smith, J.D., and J.H. Foster, Geomagnetic reversal in Brunhes normal polarity Epoch, Science, 163, 565-567, 1969.

Smith, P.J., Assumed dipolar geomagnetic field, Nature, 262, 643, 1976.

Smith, P.P.K., The identification of single-domain titanomagnetite particles by means of transmission electron microscopy, Can. J. Earth Sci., 16, 375–379, 1979.

Smith, P.P.K., The application of Lorentz electron microscopy to the study of rock magnetism, Inst. Phys. Conf. Ser., 52, 125–128, 1980.

Smith, R.J., and D.F. Pridmore, Exploration in weathered terrains: 1989 perspective, Explor. Geophys., 20, 411–434, 1989.

Smith, R.L., W.D. Corner, and B.K. Tanner, An apparatus for observing magnetic domains at low temperatures and in large applied fields., Journal of Physics E - Scientific Instruments, 13 (6), 620-622, 1980.

Smith, V.C., P. Shane, and I.A. Nairn, Reactivation of a rhyolitic magma body by new rhyolitic intrusion before the 15.8 ka Rotorua eruptive episode: implications for magma storage in the Okataina Volcanic Centre, New Zealand, J. Geol. Soc, 161 (Part 5), 757-772, 2004.

Smith-Daignières, B.M., Propriétés magnétiques de roches basaltiques provenant de la couche 2 de la croûte océanique; effets du degré de cristallisation et de l’altération basse température, Ph. D. Dissertation thesis, Université de Paris, 1984.

Snoeck, E., V. Serin, R. Fourmeaux, Z. Zhang, and P.P. Freitas, Transmission Electron Microscopy evidence of the growth of a magnetite layer acting as a spin filter in CoFe/Al2O3/CoFe magnetic tunnel junctions, J. Appl. Phys., 96 (6), 3307-3311, 2004.

Snowball, I., Mineral magnetic properties of Holocene lake sediments and soils from the Kårsa valley, Lappland, Sweden, and their relevance to palaeoenvironmental reconstruction, Terra Nova, 5 (3), 258-270, 1993.

Snowball, I., and P. Sandgren, Geomagnetic field intensity changes in Sweden between 9000 and 450 cal BP: extending the record of "archaeomagnetic jerks" by means of lake sediments and the pseudo-Thellier technique, Earth Planet. Sci. Lett, 227 (3-4), 361-376, 2004.

Snowball, I.F., Bacterial magnetite and the magnetic properties of sediments in a Swedish lake, Earth Planet. Sci. Lett., 126, 129–142, 1994.

Snowball, I.F., Gyroremanent magnetization and the magnetic properties of greigite-bearing clays in southern Sweden, Geophys. J. Int., 129 (3), 624-636, 1997.

Snowball, I.F., The detection of single-domain greigite (Fe3S4) using rotational remanent magnetization (RRM) and the effective gyro field (Bg): mineral magnetic and palaeomagnetic applications, Geophys. J. Int., 130 (3), 704-16, 1997.

Snowball, I.F., Geochemical control of magnetite dissolution in subarctic lake sediments and the implications for environmental magnetism, J. Quat. Sci., 8, 339–346, 1993.

Snowball, I.F., Magnetic hysteresis propeties of greigite (Fe3S4) and a new occurrence in Holocene sediments from Swedish Lappland, Phys. Earth Planet. Inter., 68, 32–40, 1991.

Snowball, I.F., and R. Thompson, A mineral magnetic study of Holocene sedimentation in Lough Catherine, Northern Ireland, Boreas, 19, 127–146, 1990.

Snowball, I.F., and R. Thompson, A stable chemical remanence in Holocene sediments, J. Geophys. Res. B, 95, 4471–4479, 1990.

Snowball, I.F., and R. Thompson, The occurrence of greigite in sediments from Loch Lomond, J. Quat. Sci., 3, 121–125, 1988.

Sobczak, N., J. Sobczak, J. Morgiel, and L. Stobierski, TEM characterization of the reaction products in aluminium-fly ash couples, Mater. Chem. Phys, 81 (2-3), 296-300, 2003.

Socoliuc, V., M. Rasa, V. Sofonea, D. Bica, L. Osvath, and D. Luca, Agglomerate formation in moderately concentrated ferrofluids from static magneto-optical measurements, J. Magn. Magn. Mater., 191 (1-2), 241-8, 1999.

Soderblom, L.A., R.C. Anderson, R.E. Arvidson, J.F. Bell, N.A. Cabrol, W. Calvin, P.R. Christensen, B.C. Clark, T. Economou, B.L. Ehlmann, W.H. Farrand, D. Fike, R. Gellert, T.D. Glotch, M.P. Golombek, R. Greeley, J.P. Grotzinger, K.E. Herkenhoff, D.J. Jerolmack, J.R. Johnson, B. Jolliff, G. Klingelhofer, A.H. Knoll, Z.A. Learner, R. Li, and et al., Soils of eagle crater and Meridiani Planum at the Opportunity Rover landing site, Science, 306 (5702), 1723-1726, 2004.

Soeya, S., J. Hayakawa, H. Takahashi, K. Ito, C. Yamamoto, A. Kida, H. Asano, and M. Matsui, Development of half-metallic ultrathin Fe3O4 films for spin-transport devices, Appl. Phys. Lett., 80 (5), 823-5, 2002.

Soeya, S., H. Takahashi, and Y. Takahashi, Distribution of blocking temperature in exchange-coupled Fe3O4-CrMnPt system, Appl. Phys. Lett., 86 (8), 82508-1, 2005.

Soeya, S., H. Takahashi, and Y. Takahashi, Distribution of blocking temperature in exchange-coupled Fe3O4-CrMnPt system - art. no. 082508, Appl. Phys. Lett., 86 (8), 82508, 2005.

Soffel, H., Observation and interpretation of magnetic domains in natural magnetite, in Methods in Palaeomagnetism, edited by D.W. Collinson, K.M. Creer, and S.K. Runcorn, pp. 535–538, Elsevier, Amsterdam, New York, 1967.

Soffel, H., Magnetic domains of polycrystalline natural magnetite, Zeitschrift fur Geophysik, 31, 345-361, 1965.

Soffel, H., Stress dependence of the domain structure of natural nmagnetite, Zeitschrift fur Geophysik, 32, 63-77, 1966.

Soffel, H., The singledomain - multidomain transition in natural intermediate titanomagnetites, Zeitschrift fur Geophysik, 37, 451-470,

1   ...   17   18   19   20   21   22   23   24   ...   45


Verilənlər bazası müəlliflik hüququ ilə müdafiə olunur ©atelim.com 2016
rəhbərliyinə müraciət