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Available online at www.sciencedirect.com FA \ournal ot SCIENCE @erneer- MM ani magnetic materials ELSEVIER Journal of Magnetism and Magnetic Materials 280 (2004) 425-428 www.elsevier.com/locate/jmmm Author index to volume 280 Abdu, Y.A., H. Annersten, T. Ericsson and P. Nord- Castro, A.R.M., M.M. Serna, R.N. Faria and N.B. blad, Field-induced local magnetic moments in y Lima, Comparison of the Kerr effect and X-ray pole (FCC) Fe-Ni anti-Invar alloys figure methods for determining crystallographic Abdu, Y.A., T. Ericsson and H. Annersten, Coexisting texture in PrFeB magnets antiferromagnetism and ferromagnetism in mechani- Che, S., see Wang, J. cally alloyed Fe-rich Fe-Ni alloys: implications Chen, L.-Y., see Zhou, B. regarding the Fe—Ni phase diagram below 400°C Chen, Q., see Wang, J. Andersson, G., see Blixt, A.M. Chen, Z., see Huang, X. André, G., see Schobinger-Papamantellos, P. Cheng, X., see Li, Z. Andrejco, R. and P. Vojtanik, Influence of Cr on some Chhantbar, M.C., see Thummer, K.P. structural and magnetic properties of amorphous Choi, C.-J., see Oh, S.-J. Co-based alloys Cloots, R., see Vertruyen, B. Anglada-Rivera, J., see Marifio-Castellanos, P.A. Coey, J.M.D., see van Dijken, S. Annersten, H., see Abdu, Y.A. Cool, P., see Liu, S. Annersten, H., see Abdu, Y.A. Cruz-Fuentes, A., see Marifo-Castellanos, P.A. Ausloos, M., see Vertruyen, B. Cziraki, A., see Liu, Q.X. Azzerboni, B., see Carpentieri, M. Daniel, K.D., see Ritter, J.A. Babu, P.D., see Jani, K.H. de Boer, F.R., see Xiao, Q.F. Bai, Y., see Zhao, H. de Landa Castillo-Alvarado, F., see Lopez-Chavez, E. Baker, C., S.I. Shah and S.K. Hasanain, Magnetic Del Cerro, J., see Romero, F.J. behavior of iron and iron-oxide nanoparticle/poly- Delwiche, J., see Vertruyen, B. mer composites Dincer, I., A. Elmali and Y. Elerman, Effects of Er Bakonyi, I., see Liu, Q.X. substitution for Nd on structural and magnetic Baldha, G.J., see Thummer, K.P. properties of Nd,_,.Er,.Mn2Ge (0<x<1) Baryakhtar, V.G.,O.Yu. Gorobets and V.Yu. Gorobets, Drago, V., see Lima Jr., E. Some exact distributions of order parameter in Du, Y., see Wang, J. antiferromagnetic and ferromagnetic media Dusoulier, L., see Vertruyen, B. Bhat, V.V., K.V. Ramanujachary, S.E. Lofland and A.M. Umarji, Tuning the multiferroic properties of Pb(Fe; 2Nb; 2)O; by cationic substitution Ebner, A.D., see Ritter, J.A. Bhattacharjee, A., Y. Miyazaki and M. Sorai, Calori- Ehlers, A., see Ehresmann, A. metric investigation of phase transitions in the Ehresmann, A., I. Krug, A. Kronenberger, A. Ehlers layered antiferromagnetic molecule-based material and D. Engel, In-plane magnetic pattern separation {N(n-CsH, :)a[Mn"'Fe!"(ox)s]} , (OX = oxalato) in NiFe/NiO and Co/NiO exchange biased bilayers Blixt, A.M., G. Andersson, V. Stanciu, B. Skubic, E. investigated by magnetic force microscopy Elerman, Y., see Dincer, I. Holmstr6m, P. Nordblad and B. Hjérvarsson, Elmali, A., see Dincer, I. Magnetic phase diagram of Feo s2Nio,;s/V(00 1) Engel, D., see Ehresmann, A. superlattices Briick, E., see Xiao, Q.F. Ericsson, T., see Abdu, Y.A. Buschow, K.H.J., see Schobinger-Papamantellos, P. Ericsson, T., see Abdu, Y.A. Buschow, K.H.J., see Xiao, Q.F. Fagnard, J.-F., see Vertruyen, B. Carpentieri, M., G. Finocchio, F. La Foresta and B. Fain, X., see van Dijken, S. Azzerboni, State-independent hypothesis to model Faria, R.N., see Castro, A.R.M. the behavior of magnetic materials Fei, W., see Xie, X. doi: 10.1016/S0304-8853(04)01038- 3 426 Author index to volume 280 Felton, S., K. Gunnarsson, P.E. Roy, P. Svedlindh and Kim, B.-K., see Oh, S.-J. A. Quist, MFM imaging of micron-sized permalloy Kim, D.-W., see Liebmann, M. ellipses Kiss, L.F., see Liu, Q.X. Fickenscher, T., see Latka, K. Kmiec, R., see Latka, K. Finocchio, G., see Carpentieri, M. Kronenberger, A., see Ehresmann, A. Flahaut, D., see Vertruyen, B. Krug, I., see Ehresmann, A. Kuzminski, M., see Kane, S.N. Gao, H., see Xie, X. Kwon, S.-J., see Oh, S.-J. Gercsi, Zs., see Mazaleyrat, F. Gloéckl, G., see Hergt, R. La Foresta, F., see Carpentieri, M. Gondek, L., see Tyvanchuk, Yu.B. Lachowicz, H.K., see Kane, S.N. Gorobets, O.Yu., see Baryakhtar, V.G. Latka, K., R. Kmiec, A.W. Pacyna, T. Fickenscher, R.- Gorobets, V.Yu., see Baryakhtar, V.G. D. Hoffmann and R. Péttgen, Magnetic ordering in Gui, Z., see Zhao, H. GdAuCd Gunnarsson, K., see Felton, S. Lécrivain, M., see Mazaleyrat, F. Gupta, A., see Kane, S.N. i, J.Q., see Yuan, S.L. i, L., see Wang, X. Hasanain, S.K., see Baker, C. i, L., see Zhao, H. Hébert, S., see Vertruyen, B. i, Z., L. You, Z. Li, X. Yang, X. Cheng, F. Jin and G. Hergt, R., R. Hiergeist, M. Zeisberger, G. Gléckl, W. Lin, The influence of annealing on the structural and Weitschies, L.P. Ramirez, I. Hilger and W.A. Kaiser, magnetic properties of C/CoCrPt/CrTi trilayer re- Enhancement of AC-losses of magnetic nanoparti- cording media cles for heating applications Li, Z., see Li, Z. Hernandez-Velasco, J., see Wawrzynska, E. Liang, Y., see Zhang, Q. Hervieu, M., see Vertruyen, B. Liao, C.-S., see Zhou, B. Hiergeist, R., see Hergt, R. Liebmann, M., U. Kaiser, A. Schwarz, R. Wiesendan- Hilger, I., see Hergt, R. ger, U.H. Pi, T.W. Noh, Z.G. Khim and D.-W. Kim, Hjérvarsson, B., see Blixt, A.M. Tilted magnetization of a Lao7Sro,;3MnO;/LaAlO; Hoffmann, R.-D., see Latka, K. (001) thin film Holmstrém, E., see Blixt, A.M. Lima Jr., E. and V. Drago, Influence of chemical Huang, B.-x., Y.-h. Liu, X. Yuan, C.-j. Wang, R.-z. disorder on the magnetic behaviour and phase Zhang and L.-m. Mei, The unusual magnetotran- diagram of the Fe,Ni,_, system sport properties of Lag «7Sto33MnO; with Nb,O; Lima, N.B., see Castro, A.R.M. addition Lin, G., see Li, Z. Huang, X. and Z. Chen, Nickel ferrite on silica Lin, L.W., see Zhang, W.X. nanocomposites prepared by the sol-gel method Liu, G., see Wang, J. Liu, Q.X., L. Péter, J. Toth, L.F. Kiss, A. Cziraki and I. Jani, K.H., K.B. Modi, H.H. Joshi, P.D. Babu and S.K. Bakonyi, The role of nucleation in the evolution of Paranjpe, Localized canting of spins structure in the giant magnetoresistance with layer thicknesses in spinel oxide system: Zn.Ti-Fe, ,_ -Cr,_-CoO, electrodeposited Co—Cu/Cu multilayers Jiang, H.C., see Zhang, W.X. Liu, S., Q. Wang, P. Van Der Voort, P. Cool, E.F. Jiang, M., see Liu, S. Vansant and M. Jiang, Magnetism of iron-contain- Jiménez, J., see Romero, F.J. ing MCM-41 spheres Jin, F., see Li, Z. Liu, Y.-h., see Huang, B.-x. Jin, S.-H., see Oh, S.-J. Lofland, S.E., see Bhat, V.V. Joshi, H.H., see Jani, K.H. Lopez-Chavez, E., J.:M.M. Magadan and F. de Landa Joshi, H.H., see Thummer, K.P. Castillo-Alvarado, Effect of Ni and Co impurities on Jung, R.-J., see Zhao, Y.D. the electronic structure and magnetic properties of BCC iron Kaiser, U., see Liebmann, M. Lora-Serrano, R., see Marifio-Castellanos, P.A. Kaiser, W.A., see Hergt, R. Kalychak, Ya.M., see Tyvanchuk, Yu.B. Magadan, J.M.M., see Lopez-Chavez, E. Kane, S.N., A. Gupta, $.D. Sarabhai, M. Kuzminski Maignan, A., see Vertruyen, B. and H.K. Lachowicz, On the microstructural origin Marifo-Castellanos, P.A., J. Anglada-Rivera, A. Cruz- of stress-induced anisotropy in Co,¢7FeyMo, s- Fuentes and R. Lora-Serrano, Magnetic and micro- Sij¢.sB),; metallic glass structural properties of the Ti**-doped Barium Khim, Z.G., see Liebmann, M. hexaferrite Author index to volume 280 Martin, C., see Vertruyen, B. 75 Sabitov, R.M., see Shamsutdinov, D.M. Mazaleyrat, F., Zs. Gercsi, L.K. Varga and M. Sarabhai, S.D., see Kane, S.N. Lécrivain, A novel method determining longitudin- Schobinger-Papamantellos, P., J. Rodriguez-Carvajal, ally induced magnetic anisotropy in amorphous and G. André, C. Ritter and K.H.J. Buschow, Re-entrant nanocrystalline soft materials magneto-elastic transition in HoFe,Ge, a neutron Mei, L.-m., see Huang, B.-x. diffraction study Menon, C.S., see Vinu, T.P. Schug, C., see Oksiizoglu, R.M. Micklitz, H., see Zare-Kolsaraki, H. Schwarz, A., see Liebmann, M. Miyazaki, Y., see Bhattacharjee, A. Serna, M.M., see Castro, A.R.M. Modi, K.B., see Jani, K.H. Shah, S.I., see Baker, C. Modi, K.B., see Thummer, K.P. Shamsutdinov, D.M. and R.M. Sabitov, Domain wall dynamics near the limit velocity in a cubic ferro- Nakajima, K., see van Dijken, S. magnet with induced magnetic anisotropy Ni, G., see Wang, J. Skubic, B., see Blixt, A.M. Sorai, M., see Bhattacharjee, A. Noh, H.-J., see Zhao, Y.D. Noh, T.W., see Liebmann, M. Stanciu, V., see Blixt, A.M. Nordblad, P., see Abdu, Y.A. Stewart, K.L., see Ritter, J.A. Nordblad, P., see Blixt, A.M. Su, S., see Wang, X. Svedlindh, P., see Felton, S. Szytuta, A., see Tyvanchuk, Yu.B. Oh, S.-J., C.-J. Choi, S.-J. Kwon, S.-H. Jin, B.-K. Kim Szytuta, A., see Wawrzynska, E. and J.-S. Park, Méssbauer analysis on the magnetic properties of Fe-Co nanoparticles synthesized by Thummer, K.P., M.C. Chhantbar, K.B. Modi, G.J. chemical vapor condensation process Baldha and H.H. Joshi, Localized canted spin beha- Oh, S.-J., see Zhao, Y.D. viour in Zn,Mg, 5_.MnosFeO, spinel ferrite system Oksiizoglu, R.M., C. Schug and B. York, Influence of Tohei, T. and H. Wada, Change in the character of stress and unidirectional field annealing on structural magnetocaloric effect with Ni substitution in Ho(- and magnetic performance of PtMn bottom spin- filter spin valves Co, yNi,)2 Tomkowicz, Z., see Tyvanchuk, Yu.B. Toth, J., see Liu, Q.X. Pacyna, A.W., see Latka, K. Tyvanchuk, Yu.B., Ya.M. Kalychak, £. Gondek, M. Paranjpe, S.K., see Jani, K.H. Rams, A. Szytuta and Z. Tomkowicz, Corrigendum Park, J., see Zhao, Y.D. to: ‘‘Magnetic properties of RNi,_, In; ., (R=Gd- Park, J.-S., see Oh, S.-J. Er) compounds” [J. Magn. Magn. Mater. 277 (2004) Penc, B., see Wawrzynska, E. 368-378] Peng, B., see Zhang, W.X. Péter, L., see Liu, Q.X. Umarji, A.M., see Bhat, V.V. Pi, U.H., see Liebmann, M. Pottgen, R., see Latka, K. Van Der Voort, P., see Liu, S. van Dijken, S., X. Fain, S.M. Watts, K. Nakajima and Quist, A., see Felton, S. J.M.D. Coey, Magnetoresistance of Fe;0,/Au/ Fe;0,4 and Fe;0,4/Au/Fe spin-valve structures Ramanujachary, K.V., see Bhat, V.V. Vanderbemden, Ph., see Vertruyen, B. Ramirez, L.P., see Hergt, R. Vanhoyland, G., see Vertruyen, B. Rams, M., see Tyvanchuk, Yu.B. Vansant, E.F., see Liu, S. Raveau, B., see Vertruyen, B. Varga, L.K., see Mazaleyrat, F. Ritter, C., see Schobinger-Papamantellos, P. Vertruyen, B., D. Flahaut, S. Hébert, A. Maignan, C. Ritter, J.A., A.D. Ebner, K.D. Daniel and K.L. Stewart, Martin, M. Hervieu and B. Raveau, Magnetic and Application of high gradient magnetic separation electronic ground states of B-site-substituted LaM- principles to magnetic drug targeting nO;: from antiferromagnetism to ferromagnetism Rodriguez-Carvajal, J., see Schobinger-Papamantellos, Vertruyen, B., L. Dusoulier, J.-F. Fagnard, Ph. Van- F. derbemden, G. Vanhoyland, M. Ausloos, J. Del- Romero, F.J., J. Jiménez and J. Del Cerro, Calorimetric wiche, A. Rulmont and R. Cloots, Anisotropic investigation on the paramagnetic—antiferromagnetic behaviour in the magnetic field dependence of the phase transition in CoO low temperature electrical resistance of calcium- Roy, P.E., see Felton, S. doped lanthanum manganate thin films grown by Rulmont, A., see Vertruyen, B. RF magnetron sputtering 428 Author index to volume 280 Vinu, T.P. and C.S. Menon, Third-order elastic con- Yang, X., see Li, Z. stants of the alloy Fe72Pt2s York, B., see Oksiizoglu, R.M. Vojtanik, P., see Andrejco, R. You, L., see Li, Z. Yu, B., see Xie, X. Wada, H., see Tohei, T. Yuan, S.L. and J.Q. Li, Electron paramagnetic reso- Wang, C.-j., see Huang, B.-x. nance measurements for (La, Y),/,(Ca, Ba), ,;MnO; Wang, J., G. Liu, G. Ni and Y. Du, Domain wall Yuan, X., see Huang, B.-x. pinning in polycrystalline perovskite Lap 7Sro ;MnO; Yue, Z., see Wang, X. Wang, J., Q. Chen and S. Che, Magnetic properties in BaFe,2O;9 nanoparticles prepared under a magnetic Zare-Kolsaraki, H. and H. Micklitz, Tunneling magne- field toresistance of C)H> molecules sandwiched between Wang, Q., see Liu, S. Co clusters Wang, S.-Y., see Zhou, B. Zeisberger, M., see Hergt, R. Wang, X., L. Li, S. Su and Z. Yue, Electromagnetic Zhang, H., see Xie, X. properties of low-temperature-sintered Ba;Co2_,Zn,- Zhang, Q., G. Wei, Z. Xin and Y. Liang, Effective-field Fe2404, ferrites prepared by solid state reaction theory and Monte Carlo study of a _ layered method mixed spin-1 and spin-2 Ising system on honeycomb Watts, S.M., see van Dijken, S. lattice Wawrzynska, E., J. Hernandez-Velasco, B. Penc and A. Zhang, R.-z., see Huang, B.-x. Szytuta, Magnetic structures of R3Cu,Siy (R= Dy, Zhang, W.L., see Zhang, W.X. Ho and Er) Zhang, W.X., W.L. Zhang, L.W. Lin, B. Peng, H.C. Wei, G., see Zhang, Q. Jiang and S.Q. Yang, Composition control and its Weitschies, W., see Hergt, R. influence to the magnetic properties of TbFe, film Wiesendanger, R., see Liebmann, M. Zhang, X., see Xie, X. Zhang, Y.-W., see Zhou, B. Xiao, Q.F., E. Briick, Z.D. Zhang, F.R. de Boer and Zhang, Z.D., see Xiao, Q.F. K.H.J. Buschow, Effect of ordering transformation Zhao, H., J. Zhou, Y. Bai, Z. Gui and L. Li, Effect of Bi- rate on the magnetic properties of Fe—Pt-based bulk substitution on the dielectric properties of polycrys- alloys talline yttrium iron garnet Xie, X., X. Zhang, B. Yu, H. Gao, H. Zhang and W. Zhao, Y.D., J. Park, R.-J. Jung, H.-J. Noh and S.-J. Oh, Fei, Rapid extraction of genomic DNA from saliva Structure, magnetic and transport properties of for HLA typing on microarray based on magnetic La,_,Bi,MnO, nanobeads Zhou, B., Y.-W. Zhang, C.-S. Liao, C.-H. Yan, L.-Y. Xin, Z., see Zhang, Q. Chen and S.-Y. Wang, Rare-earth-mediated magnet- ism and magneto-optical Kerr effects in nanocrystal- Yan, C.-H., see Zhou, B. line CoFeMgnREop p;O 4 thin films Yang, S.Q., see Zhang, W.X. Zhou, J., see Zhao, H. Available online at www.sciencedirect.com FA \ournal of SCIENCE G@prnecr: magnetism and magnetic materials ELSEVIER Journal of Magnetism and Magnetic Materials 280 (2004) 429-430 www.elsevier.con/locate/jmmm Subject index to volume 280 AC susceptibility 23, 75 Electrodeposition 60 Laves phase compounds 101 AC-losses 358 Electronic structure 293 LFMR 176 Anisotropic magnetoresistance 264 Exchange bias 369 Localized canting of spins 334 Annealing 108, 419 Exchange interactions 75 Low temperature sintering 208 Antiferromagnet 1, 377 External field 243 Antiferromagnetism 395 Magnetic after-effect 108 Antitaenite 243 Feso.75Pt39.sNbo,75 bulk alloy 381 Magnetic anisotropy 214, 334, 346 Applied magnetic fields 184 Fe-Co nanoparticle 147 Magnetic domain 143 Average particle size 147 Fe-Ni 251 Magnetic drug particle carriers 184 Fe-Ni alloys 243, 395 Magnetic drug targeting 184 Ba3Co_,. Zn, Fe404) 10 Ferrites 23 Magnetic entropy 101 Barium hexaferrite 214 Ferroelectricity 221 Magnetic fields 281 Binomial distribution 251 Ferrofluids 358 Magnetic force microscopy 51, 202, 369 Bi-substitution 208 Ferromagnet 377 Magnetic hyperthermia 358 Brown relaxation 358 First-order magnetic transition 101 Magnetic hysteresis 60 Fisher relation 257 Magnetic materials 281 Cadmium 90 Magnetic measurements 44 Canted spin structure 23 GMR 60 Magnetic microspheres 184 Cation distribution 23 Green’s functions 293 Magnetic nano-beads 164 Chemical disorder 251 Magnetic nanoparticle 358 Chemical vapor condensation 147 Heat capacity | Magnetic ordering 234 Circulatory system 184 Hexagonal ferrite 10 Magnetic patterning 369 Clusters 311 HFMR 176 Magnetic phase transition 44 Cobalt ferrite 327 High gradient magnetic separation 184 Magnetic properties 84, 214, 419, 147 Cobalt oxide 257 High-frequency property 10 Magnetic recording media 419 Co-based amorphous alloys 108 HLA typing 164 Magnetic spin valve 322 Co-Cu/Cu multilayers 60 Honeycomb lattice 14 Magnetic structure 75, 119 Coercivity 37 Hubbard Hamiltonian 293 Magnetism 31, 90, 221, 293 Colossal magnetoresistance 176, 264, Magnetite 322 404 Induced anisotropy 391 Magnetization 23, 243 Composition control 143 Induced magnetic anisotropy 169 Magnetocaloric effect 101 Crystal structure 90 Inert gas condensation 412 Magnetoresistance 322, 346 Interlayer coupling 14 Magnetostrictive film 143 Dielectric properties 208 Interlayer exchange coupling 346 Magnetotransport phenomena 311 Disorder—order transformation 381 Intermetallic compound 90 Magnetron sputtering 143 DNA extraction 164 INVAR alloys 251 Magnets 273 Domain structure 51, 202 Ion bombardment 369 Manganates 264 Domain wall 169 Iron 412 Manganites 51, 75, 404 Domain wall motions 316 Iron-loading 31 MCM.-4I spheres 31 Domain wall pinning 316 Iron-oxide 412 Mechanical alloying 395 Drug delivery 184 Ising system 14 Metal-assembled-complex | Dynamic phase segregation 227 Metal-insulator transitions 404 Dynamics 169 Kerr effects 327 Metal-insulator-metal structures 311 MFM 143 Effective-field theory with correlations 14 Landau-Lifshitz equation 377 Microarray 164 Elastic constants 287 Latent heat 257 Micromagnetic calculations 202 doi: 10.1016/S0304-8853(04)01048- 5 430 Subject index to volume 280 Microstructure 214 Perovskite manganites 227 Small magnetic particle 377 Monte Carlo simulation 14 Phase diagram 251 Soft magnetic 391 Mossbauer 395 Polymer nanocomposites 412 Soft steels 158 Mossbauer spectroscopy 84, 90, 147, 243 Preisach 158 Solid state reaction method 10 Multiferroism 221 Pressure derivatives 287 Sol-gel method 37 PrFeB alloys 273 Specific heat 257 Nanocomposites 37 Pyrolysis 31 Spin-dependent scattering and tunneling Nanocrystalline 391 176 Nanocrystalline thin films 327 Rare earth alloys 119 Spinel oxides 334 Nanomaterials 281 Rare earth compounds 44 Stress-induced anisotropy 84 Nanoscale exchange coupling 381 Rare earth intermetallics 234 Stripe domains 51 Néel relaxation 358 Rare-earth ions 327 Superlattice 346 Neel temperature 221 Rare-earth manganites 176 Superparamagnetism 147 Neutron diffraction 119, 234, 334 Rayleigh law 316 NiFe20, 37 RCo; 101 Texture 273 Nucleation and growth 60 Re-entrant magneto-elastic transition Thin films 51 119 Transition metal compounds 44 Order parameter 377 Oxalato ligand | Saliva 164 Vibrational anharmonicity 287 Saturation magnetization 37 Paramagnetic anomalies 227 Scalar hysteresis 158 XRD 84 Permalloy 202 Short-range order 84 Permeability 316 Simulated annealing 119 Perovskite 264, 316 SiO, 37 Yttrium iron garnet 208

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