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Physica C: Superconductivity 1994: Vol 219 Index PDF

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Preview Physica C: Superconductivity 1994: Vol 219 Index

PHYSICA [i Physica C 219 (1994) 505-509 North-Holland Author Index to Volume 219 Conradson, S.D., see G.G. Li 219, 371 Ai, R., see J.P. Zhang 219, 191 Cooper, J.R., see A. Carrington 219, 119 Akimitsu, J., see M. Kikuchi 219, 200 Allenspach, P.,seeM.J. Kramer 219, 145 Damodaran, A.D., see J. Koshy 219, 141 Androsov, V.V., I.Y. Bezotosniy, N.I. Bobrov, Daumling, M., J.-C. Grivel, B. Hensel and R. Fiiikiger, A.I. Golovashkin, V.F. Elesin, O.M. Ivanenko and Mechanically induced flux pinning in (Bi,Pb) Sr,Ca,Cu,0, K.V. Mitsen, Influence of fast electron irradiation damage tapes 219, 429 on the critical temperature of polycrystalline Derevyanko, V.V., see V.I. Makarov 219, 273 Nd2_.Ce,CuO,_, 219, 71 De Rooy, J.C.J.M., see A.V. Skripov 219, | Antipov, E.V., see E.M. Kopnin 219, 47 Dong, C., see X. Zhou 219, 123 Aoki, S., see M. Fukutomi 219, 333 Dorosinskii, L.A., V.I. Nikitenko, A.A. Polyanskii and Aomine, T., see C. Panagopoulos 219, 435 V.K. Vlasko-Vlasov, Influence of twins on the critical Aoyagi, E., see M. Kikuchi 219, 200 current in YBaCuO single crystals 219, 81 Apaja, V.,see A. Kallio 219, 340 Dul€ic, A., see C. Kessler 219, 233 Dumas, J., see S. Revenaz 219, 450 Badeéche, T., see V. Grachev 219, 395 Barilo, S.N., see I.W. Sumarlin 219, 195 Edelman, H.S.,see A. Umezawa_ 219, 378 Beasley, M.R., see J.S. Urbach 219, 93 Egawa, K., see N. Kobayashi 219, 265 Behner, H., W. Rauch and E. Gornik, Long-time behaviour of Egi, T.,see Y. Kusano 219, 366 the high-frequency properties of YBCO thin films 219, Elesin, V.F., see V.V. Androsov 219, 71 228 Berberich, P., B. Utz, W. Prusseit and H. Kinder, Homogeneous high quality YBa,Cu,O, films on 3” and 4” Faulques, E., P. Molinié, P. Berdahl, T.P. Nguyen and J.- L. Mansot, Iodine insertion in high-7, cuprates Raman, substrates 219, 497 magnetization, X-ray photoelectron and electron energy loss Berdahl, P., see E. Faulques 219, 297 Bettahi, A., see V. Grachev 219, 395 measurements 219, 297 Bezotosniy, I.Y.,see V.V. Androsov 219, 71 Feng, Y.,see A. Umezawa 219, 378 Bhat, S.V., A. Rastogi, N. Kumar, R. Nagarajan and Finkel’, V.A., see V.I. Makarov 219, 273 C.N.R. Rao, Paramagnetic Meissner effect in YBa,Cu307_5 Fliikiger, R., see M. Daumling 219, 429 A non-resonant microwave absorption study 219, 87 Foldeaki, M., see M. Paranthaman 219, 413 Blackstead, H.A. and G.A. Kapustin, High-field temperature- Freeman, A.J., see D.L. Novikov 219, 246 dependent transport in polycrystalline Tl-Ba—Ca—Cu- Fukami, T., see C. Panagopoulos 219, 435 O 219, 109 Fukuoka, A., see J. Wang 219, 33 Bobrov, N.I., see V.V. Androsov 219, 71 Fukutomi, M., S. Aoki, K. Komori, R. Chatterjee and H. Maeda, Laser deposition of YBa,Cu,3O, thin films on a Boulesteix, C., see V. Grachev 219, 395 metallic substrate with biaxially textured YSZ buffer layers Brom, H.B., see A.V. Skripov 219, 1 prepared by modified bias sputtering 219, 333 Bryntse, I.,see E.M. Kopnin 219, 47 Burgin, T.,see L.K. Montgomery 219, 490 Funahashi, S.,seeK. Mori 219, 176 Fung, K.K., see W.L. Zhou 219, 457 Carrington, A. and J.R. Cooper, Influence of grain-boundary scattering on the transport properties of a high-7, oxide Gartstein, Yu.N. and A.G. Mal’shukov, Upper critical field and superconductor 219, 119 glass-like phases in a superconductor with random negative- Carter, W.L., see A. Umezawa 219, 378 Ucentres 219, 39 Chatterjee, R., see M. Fukutomi 219, 333 Gerbaux, X. and A. Hadni, Far infrared transmission spectra of Chattopadhyay, T., see I.W. Sumarlin 219, 195 high-7, superconductor GdBaCuO 1219, 9 Chatzidimitriou-Dreismann, C.A., Linear tunneling Gilchrist, J., Critical state model: comparison of transverse and conductance and transition temperature in the Pb-Bi-O elongated geometries 219, 67 superconductors 219, 420 Gnanasekar, K.I., A.S. Tamhane, R. Pinto, R. Nagarajan, Chowdury, A.J.S.,seeS.T. Johnson 219, 61 M. Sharon, L.C. Gupta and R. Vijayaraghavan, Christensen, N.E., see C. Osvaldo Rodriguez 219, 17 Superconductivity and valence states of Ce, Pr and Tb in 506 Index of authors and papers bulk Lu, _.M,Ba,Cu,;07_; (M=Ce, Pr and Tb) Johnson, S.T., P.D. Hatton, A.J.S. Chowdury, B.M. Wanklyn, systems 219, 183 Y.F. Yan, Z.X. Zhao and A. Marshall, X-ray scattering Gnansekar, K.I., R. Pinto, A.S. Tamhane, S.P. Pai, L.C. Gupta, studies of a variety of Bi,Sr,CaCu,O, single crystals 219, M. Sharon and R. Vijayaraghavan, Superconductivity in 61 thin films of the composition Mo 5;Cap,;BazCu307_ 5 (M=Lu, Tb, Th) 219, 402 Kallio, A., V. Apaja, X. Xiong and S. Péykk6, Boson Golovashkin, A.I., see V.V. Androsov 219, 71 localization and universality in YBa,Cu3;_,M,O7_5 219, Golovin, V.N., see V.I. Makarov 219, 273 340 Gornik, E.,see H. Behner 219, 228 Kapitulnik, A., see J.S. Urbach 219, 93 Grachev, V., T. Badéche, A. Bettahi, J. Marfaing and Kapustin, G.A., see H.A. Blackstead 219, 109 C. Boulesteix, Resistance versus temperature model for Katano, S., see K. Mori 219, 176 porous multiphased superconducting materials and Kawaguchi, Y.,see K. Mori 219, 176 associated parametrization method for the experimental Kawashima, T. and E. Takayama-Muromachi, Oxygen data 219, 395 deficiency and superconductivity in Nd,_,Ce,CuO, 219, Grigoryan, L. and K. Yakushi, Role of double Bi—O layers in 389 flux pinning properties of Bi-oxides 219, 74 Kemmler-Sack, S., see T. Rentschler 219, 167 Grivel, J.-C.,see M. Daumling 219, 429 Kessler, C., B. Nebendahl, D.-N. Peligrad, A. Dultic, H.- Gupta, L.C., see O.G. Singh 219, 156 U. Habermeier and M. Mehring, Flux-pinning effects in Gupta, L.C., see K.I. Gnanasekar 219, 183 field-modulated microwave absorption of YBa,Cu;07_; Gupta, L.C., see K.I. Gnansekar 219, 402 thin films 219, 233 Gupta, M.,see R.P. Gupta 219, 21 Kessler, P., see T. Rentschler 219, 167 Gupta, R.P. and M. Gupta, Origin of the non-metallic behavior Khalfin, I.B., see B.Ya. Shapiro 219, 465 in LizC¢60, Na2Cgo and Mg,C¢q 219, 21 Kharlanov, A.L., seeE.M. Kopnin 219, 47 Kikuchi, M., E. Ohshima, N. Ohnishi, Y. Muraoka, Habermeier, H.-U., see C. Kessler 219, 233 S. Nakajima, E. Aoyagi, M. Ogawa, J. Akimitsu, T. Oku, Hadni, A., see X. Gerbaux 219,9 K. Hiraga and Y. Syono, Synthesis and superconductivity of Hamada, K., see J. Wang 219, 33 oxycarbonates of the Tl-1201 phase 219, 200 Hamaguchi, Y.,see K. Mori 219, 176 Kinder, H., see P. Berberich 219, 497 Hardy, V.,see A. Maignan 219, 407 Kleiner, V.Z., see V.I. Makarov 219, 273 Hatton, P.D., see S.T. Johnson 219, 61 Kobayashi, N., K. Egawa, K. Miyoshi, H. Iwasaki, H. Ikeda and Heinrich, A., see C.H. Riischer 219, 471 R. Yoshizaki, Fluctuation effects in specific heat and Hensel, B., see M. Daumling 219, 429 magnetization of c-axis aligned (Bi, Hermann, A.M., see M. Paranthaman 219, 413 Pb)Sr,Ca,Cu;0, 219, 265 Hervieu, M., see A. Maignan 219, 407 Koblischka, M.R., Th. Schuster and H. Kronmiiller, Flux Hinks, D.C., see J.P. Zhang 219, 191 penetration in granular YBa,Cu;07_; samples A magneto- Hirabayashi, M., K. Tokiwa, H. Ozawa, Y. Noguchi, optical study 219, 205 M. Tokumoto and H. Ihara, High-pressure synthesis of Komori, K., see M. Fukutomi 219, 333 single-phase “1223”’ mercury-based superconductors 219, Kopnin, E.M., A.L. Kharlanov, I. Bryntse and E.V. Antipov, 6 Synthesis and investigation of Sr-containing 223 and 1222 Hiraga, K., see M. Kikuchi 219, 200 complex oxides in the R-Sr—Ce—Cu-O system (R=Pr, Nd, Hirakawa, K., see Y. Tomokiyo 219, 288 Sm-Gd, Dy-Yband Y) 219, 47 Hor, P.H., see D. Xianxi 219, 281 Koshy, J., J.K. Thomas, J. Kurian, Y.P. Yadava, Hriljac, J.A., A.R. Moodenbaugh and Y. Xu, Neutron- M.A. Ittyachan and A.D. Damodaran, Superconductivity in diffraction study of reduced and reoxidized YBa,Cu;07_;-YBa,HfO; ;c omposites by rapid quenching YBaz(Cuo.90C09.10)307_5 219, 315 inair 219, 141 Huffman, J.C., see L.K. Montgomery 219, 490 Kramer, M.J., S.I. Yoo, R.W. McCallum, W.B. Yelon, H. Xie and P. Allenspach, Hole filling, charge transfer and Ihara, H., see M. Hirabayashi 219, 6 superconductivity in Nd,,,Ba,_,.Cu3;07,5; 219, 145 Ikeda, H., see N. Kobayashi 219, 265 Kronmiiller, H., see M.R. Koblischka 219, 205 Ikeda, Y.,see Y. Kusano 219, 366 Kubo, T., see Y. Yokoyama 219, 327 Ishigaki, T.,see K. Mori 219, 176 Kumar, N., see S.V. Bhat 219, 87 Ittyachan, M.A.,see J. Koshy 219, 141 Kumar, N., see S.R. Shukla 219, 483 Ivanenko, O.M., see V.V. Androsov 219, 71 Kupfer, H., see A.A. Zhukov 219, 99 Iwasaki, H., see N. Kobayashi 219, 265 Kurian, J.,see J. Koshy 219, 141 Izumi, T.,see T. Kurihama 219, 57 Kurihama, T., M. Yamashita, K. Tsuruta, T. Izumi and T. Nakajima, Effects of X-ray irradiation on Bi-based high- Jia, S.,see X. Zhou 219, 123 T, superconductors 219, 57 Index of authors and papers Kuriyaki, H., see Y. Tomokiyo 219, 288 temperature of RBa,Cu,O, (R=Tm, Er, Ho, Y, Dy and Kusano, Y., T. Nanba, J. Takada, T. Egi, Y. Ikeda and Gd) 219, 176 M. Takano, Segregation and dissolution reactions of the Mryasov, O.N., see D.L. Novikov 219, 246 2223 phase in the Bi, Pb-Sr—Ca—Cu-—O system on annealing Muraoka, Y., see M. Kikuchi 219, 200 inair 219, 366 Murashov, V.A., see A.A. Zhukov 219, 99 Muroi, M., Crystal structure and 7, in copper oxides A clue to the mechanism of high-temperature superconductivity Larbalestier, D.C., see A.U mezawa 219, 378 219, 129 Li, F.H., see W. Liu) 219, 114 Mustre de Leon, J.,seeG.G. Li 219, 371 Li, G.G., J. Mustre de Leon, S.D. Conradson and Muto, H., K. Matsuura and Y. Tai, Separation of M.A. Subramanian, Local structure of Tl, (Ba, _,Sr,.)»CuO, magnetizations in the bulk and at Josephson junctions of Tl] (x=0.0, 0.4, 0.5) studied by X-ray absorption and Bi oxide superconductors using ESR spectroscopy 219, 371 Li, H.C., see W. Liu 219, 114 spectrometers 219, 259 Li, H.C., see W.L. Zhou 219, 457 Li, J.,.see X. Zhou 219, 123 Nagarajan, R., see S.V. Bhat 219, 87 Li, L., see W. Liu 219, 114 Nagarajan, R., see K.I. Gnanasekar 219, 183 Li, L., see W.L. Zhou 219, 457 Nakagawa, Y.,see Y. Yokoyama 219, 327 Li, W.,seeD. Yan 219, 255 Nakajima, S., see M. Kikuchi 219, 200 Lichte, H., see T. Rentschler 219, 167 Nakajima, T.,see T. Kurihama 219, 57 Liu, W., R.F. Ming, F.H. Li, C.A. Wang, R.L. Wang, H.C. Li Nanba, T.,see Y. Kusano 219, 366 and L. Li, Microstructure of GdBa,Cu;0,_; films grown on Narlikar, A.V., see O.G. Singh 219, 156 SrTiO; substrate 219, 114 Nebendahl, B., see C. Kessler 219, 233 Lombardo, L.W., see J.S. Urbach 219, 93 Nguyen, T.P., see E. Faulques 219, 297 Lynn, J.W., seeI.W. Sumarlin 219, 195 Nikitenko, V.I., see L.A. Dorosinskii 219, 81 Noguchi, Y., see M. Hirabayashi 219, 6 Novikov, D.L., O.N. Mryasov and A.J. Freeman, Anisotropic Maeda, H., see M. Fukutomi 219, 333 compressibility and effects of pressure on the electronic Maignan, A., C. Martin, V. Hardy, Ch. Simon, M. Hervieu and structure and 7, for superconducting infinite layer B. Raveau, A crystal study of the 128 K superconductor compounds 219, 246 T1,Ba,Ca,Cu30;9_ 5S ynthesis and anisotropic magnetic properties 219, 407 Ogawa, M., see M. Kikuchi 219, 200 Makarov, V.I., V.Z. Kleiner, O.N. Ovcharenko, N.S. Tereshina, V.A. Finkel’, V.N. Golovin and V.V. Derevyanko, On the Ohnishi, N., see M. Kikuchi 219, 200 effect of atom substitutions and pressure on the Ohshima, E., see M. Kikuchi 219, 200 superconductivity of yttrium cuprates 219, 273 Oku, T., see M. Kikuchi 219, 200 Mal’shukov, A.G., see Yu.N. Gartstein 219, 39 Osvaldo Rodriguez, C., R. Weht, M. Weissmann, N.E. Christensen and E.L. Peltzer y 8lanca, Electronic Mansot, J.-L., see E. Faulques 219, 297 structure of the mercury-based high-7, compound with four Marfaing, J.,see V. Grachev 219, 395 CuO, layers: HgBazCa,,_ ;Cu,,0O2,42 (=4) 219,17 Marks, L.D., see J.P. Zhang 219, 191 Ovcharenko, O.N., see V.I. Makarov 219, 273 Marshall, A., see S.T. Johnson 219, 61 Martin, C., see A. Maignan 219, 407 Ozawa, H., see M. Hirabayashi 219, 6 Martynkin, A.Yu., see A.A. Zhukov 219, 99 Matsuura, K.,seeH. Muto 219, 259 Padalia, B.D., see O.G. Singh 219, 156 McCallum, R.W., see M.J. Kramer 219, 145 Pai, S.P., see K.I. Gnansekar 219, 402 Mehring, M., see C. Kessler 219, 233 Panagopoulos, C., T. Fukami and T. Aomine, Temperature- Ming, R.F., see W. Liu 219, 114 gradient and current-density effects on the thermoelectric Minh-Tien, T., Optical conductivity and resistivity in the two- power and electrical resistivity, respectively, near the critical band Emery model 219, 162 temperature in granular YBa,Cu3;0,_; 219, 435 Mitsen, K.V., see V.V. Androsov 219, 71 Pandya, D.K., see S.R. Shukla 219, 483 Miyoshi, K., see N. Kobayashi 219, 265 Paranthaman, M., M. Foldeaki, R. Tello and A.M. Hermann, Molinié, P., see E. Faulques 219, 297 Synthesis and magnetic characterization of Montgomery, L.K., T. Burgin, J.C. Huffman, J. Ren and M.- (Tlo.sPbo.5 )Sr2Ca2zCu3;0, and T1,Ba,CaCu,Ox3 bulk H. Whangbo, Synthesis, superconductivity, X-ray structure superconductors 219, 413 and electronic band structure of A-(BETS), GaCl, 219, Parrell, J.A., see A.U mezawa 219, 378 490 Peligrad, D.-N., see C. Kessler 219, 233 Moodenbaugh, A.R., see J.A. Hriljac 219, 315 Peltzer y Blanca, E.L., see C. Osvaldo Rodriguez 219, 17 Mori, K., Y. Kawaguchi, T. Ishigaki, S. Katano, S. Funahashi Pinto, R., see K.I. Gnanasekar 219, 183 and Y. Hamaguchi, Crystal structure and critical Pinto, R., see K.I. Gnansekar 219, 402 508 Index of authors and papers Platt, C.E., see J.P. Zhang 219, 191 Sumarlin, I.W., J.W. Lynn, T. Chattopadhyay, S.N. Barilo and Polyanskii, A.A., see L.A. Dorosinskii 219, 81 D.I. Zhigunov, Dispersion of the magnetic excitations of the Ponomarenko, L.A., see A.A. Zhukov 219, 99 Prionsin Pr,CuO, 219, 195 PéykkG, S., see A. Kallio 219, 340 Suzuki, Y., see Y. Yokoyama 219, 327 Prakash, O., seeO.G. Singh 219, 156 Syono, Y., see M. Kikuchi 219, 200 Prusseit, W., see P. Berberich 219, 497 Tai, Y.,seeH. Muto 219, 259 Rao, C.N.R., see S.V. Bhat 219, 87 Takada, J.,see Y. Kusano 219, 366 Takano, M., see Y. Kusano 219, 366 Rastogi, A., see S.V. Bhat 219, 87 Rauch, W., see H. Behner 219, 228 Takano, S., see J. Wang 219, 33 Raveau, B., see A. Maignan 219, 407 Takayama-Muromachi, E., see T. Kawashima 219, 389 Tamhane, A.S., see K.I. Gnanasekar 219, 183 Reddy, Y.S.,see B. Sarkar 219, 26 Reddy, Y.S., see S.R. Shukla 219, 483 Tamhane, A.S., see K.I. Gnansekar 219, 402 Ren, H.T., J.A. Xia and K.N.R. Taylor, Intermediate Tanaka, E., see Y. Tomokiyo 219, 288 transitions in as-grown MTG “‘single crystal” YBCO 219, Tanaka, Y., A microscopic theory of the Josephson junction 221 formed in an atomic scale 219, 213 Ren, J.,.see L.K. Montgomery 219, 490 Taylor, K.N.R.,see H.T. Ren 219, 221 Rentschler, T., S. Kemmler-Sack, P. Kessler and H. Lichte, Tello, R., see M. Paranthaman 219, 413 Superconducting properties of Pb-free and Pb-substituted Tereshina, N.S., see V.I1. Makarov 219,273 bulk ceramics of Bi-2212 cuprates 219, 167 Thomas, J.K.,see J. Koshy 219, 141 Revenaz, S. and J. Dumas, Magnetically modulated microwave Tokiwa, K., see M. Hirabayashi 219, 6 absorption and harmonic generation in YBa,Cu;O, thin Tokumoto, M., see M. Hirabayashi 219, 6 films 219, 450 Tomokiyo, Y., E. Tanaka, X. Zheng, H. Kuriyaki and K. Hirakawa, Microstructures and dissociated dislocations Riley Jr., G.N., see A.U mezawa 219, 378 in YBa,Cu30,_.,. prepared by a “grain-coating” Riischer, C.H., A. Heinrich and W. Urland, Bipolaron absorption in Ba, _,K,BiO;3 and Bap ¢Ko4_,Cs,BiO; 219, technique 219, 288 471 Tsay, H.L., seeH.D. Yang 219, 241 Rybachuk, V.A.,see A.A. Zhukov 219, 99 Tsuruta, K.,see T. Kurihama 219, 57 Umeda, M., see Y. Yokoyama 219, 327 Sarkar, B., Y.S. Reddy and R.G. Sharma, Effect of Sb doping on critical current density in Bi( Pb )—Sr—Ca—Cu-—O high-7, Umezawa, A., Y. Feng, H.S. Edelman, T.C. Willis, J.A. Parrell, D.C. Larbalestier, G.N. Riley Jr. and W.L. Carter, Further superconductors 219, 26 Scherer, T., Anisotropy of the oxygen out diffusion in partially evidence that the critical current density of (Bi, Pb )Sr2Ca,Cu,30O, silver-sheathed tapes is controlled by untwinned YBCO thin films on NdGaO; substrates 219, residual layers of (Bi, Pb)2Sr,CaCu,0O, at (001) twist 363 boundaries 219, 378 Schuster, Th., see M.R. Koblischka 219, 205 Shapiro, B.Ya. and I.B. Khalfin, Charged grain boundaries as Urbach, J.S., L.W. Lombardo, W.R. White, M.R. Beasley and A. Kapitulnik, Resistive and thermodynamic transitions of a pinning centers in high-7, superconductors 219, 465 two-dimensional superconductor in a magnetic field 219, Sharma, R.G., see B. Sarkar 219, 26 93 Sharma, R.G., see S.R. Shukla 219, 483 Sharma, S.K., see S.R. Shukla 219, 483 Urland, W., see C.H. Riischer 219, 471 Usami, R., see J. Wang 219, 33 Sharon, M., see K.I. Gnanasekar 219, 183 Utz, B., see P. Berberich 219, 497 Sharon, M., see K.I. Gnansekar 219, 402 Shi, D.L., see J.P. Zhang 219, 191 Shukla, S.R., D.K. Pandya, Y.S. Reddy, N. Kumar, Vijayaraghavan, R., see K.I. Gnanasekar 219, 183 S.K. Sharma and R.G. Sharma, Microstructural Vijayaraghavan, R., see K.I. Gnansekar 219, 402 investigations of Ag/Bi(Pb)SrCaCuO tapes prepared using Vlasko-Vlasov, V.K., see L.A. Dorosinskii 219, 81 commercial-grade materials 219, 483 Simon, Ch., see A. Maignan 219, 407 Wakata, M., see J. Wang 219, 33 Singh, O.G., B.D. Padalia, O. Prakash, K. Suba, A.V. Narlikar Wang, C.A., see W. Liu 219, 114 and L.C. Gupta, Phase diagram for the electron-doped Wang, C.A., see W.L. Zhou 219, 457 Nd,2_,.Ce,CuO, superconducting system 219, 156 Wang, J., S. Takano, M. Wakata, R. Usami, K. Hamada, Skripov, A.V., J.C.J.M. De Rooy and H.B. Brom, Field A. Fukuoka and H. Yamauchi, Synthesis and high oxygen dependent 'H-spin-lattice relaxation in the superconducting pressure annealing effects in (Bi,Cu)-1212 cuprates 219, state of (BEDT-TTF),4Hsg,B>r , 219, 1 33 Suba, K., see O.G. Singh 219, 156 Wang, R.L., see W. Liu 219, 114 Subramanian, M.A., see G.G. Li 219, 371 Wang, R.L., see W.L. Zhou 219, 457 Index of authors and papers 509 Wang, Y.Y., see J.P. Zhang 219, 191 and S. Yoshida, Magnetic field distributiom at the surface of Wang, Z.,see D. Yan 219, 255 field-oriented YBa,Cu;O, polycrystals amd the critical Wanklyn, B.M., see S.T. Johnson 219, 61 current 219, 327 Weht, R., see C. Osvaldo Rodriguez 219, 17 Yoo, S.I., see M.J. Kramer 219,145 Weissmann, M., see C. Osvaldo Rodriguez 219, 17 Yoshida, S.,see Y. Yokoyama 219, 327 Whangbo, M.-H., see L.K. Montgomery 219, 490 Yoshizaki, R., see N. Kobayashi 219, 265 White, W.R., see J.S. Urbach 219, 93 Willis, T.C., see A.U mezawa 219, 378 Zhang, J.P., Y.Y. Wang, R. Ai,C.E. Platt, ¥ . Zhang, D.L. Shi, Xia, J.A.,seeH.T. Ren 219, 221 D.C. Hinks and L.D. Marks, Atomic imaging of Xianxi, D. and P.H. Hor, Stage number of CuO,-layer-based Bao 6Ko.4BiO; using low-dose techniques 219, 191 high-7,, superconductors and layer force range 219, 281 Zhang, Y., see J.P. Zhang 219, 191 Xie, H.,see M.J. Kramer 219, 145 Zhao, Z., see X. Zhou 219, 123 Xiong, X., see A. Kallio 219, 340 Zhao, Z.X., see S.T. Johnson 219, 61 Xu, T.,seeD. Yan 219, 255 Zheng, X., see Y. Tomokiyo 219,288 Xu, Y., see J.A. Hriljac 219, 315 Zhigunov, D.I.,seeI.W. Sumarlin 219, 1OS Zhou, W.L., C.A. Wang, K.K. Fung, Y.CQ. Zhou, R.L. Wang, Yadava, Y.P.,seeJ. Koshy 219, 141 H.C. Liand L. Li, Transmission electrom mmicroscopy study Yakushi, K., see L. Grigoryan 219, 74 of microstructure and fine a, b-axis-oOriemted grains as flux- Yamashita, M.,see T. Kurihama 219, 57 pinning centers in c-axis-oriented GdBa5C~u5.O,_ , thin Yamauchi, H.,seeJ. Wang 219, 33 film 219, 457 Yan, D., Z. Wang, T. Xu and W. Li, Superconductivity in Zhou, X., Y. Yao, C. Dong, J. Li, S. Jiaaand 2@. Zhao, doped fullerenes Superconductors with wide-frequency- Superconductivity in the (Sr,_,Y,)\CuOs. €x«—>0.00—-0.30) region phonon spectrum 219, 255 system synthesized under high pressure 2:19, 123 Yan, Y.F., see S.T. Johnson 219, 61 Yang, H.D. and H.L. Tsay, Structural, magnetic and electrical Zhou, Y.Q., see W.L. Zhou 219, 457 studies on Pr(Ba,_,Sr,.)2Cu,NbOg_, 219, 241 Zhukov, A.A., H. Kupfer, V.A. Rybachuk, ET_-_.AA. Ponomarenko, V.A. Murashov and A.Yu. Martynkin, Shielding currents Yao, Y., see X. Zhou 219, 123 Yelon, W.B., see M.J. Kramer 219, 145 and current-voltage characteristics of Bi5s>Sr5Ca,Cu,O¢g,5 Yokoyama, Y., T. Kubo, Y. Nakagawa, M. Umeda, Y. Suzuki single crystal 219, 99 PHYSICA Physica C 219 (1994) 510-511 North-Holland Analytic Subject Index to Volume 219 AC susceptibility 26, 67,221,378 Flux pinning 74, 167, 205, 233, 259, Non-ohmic behaviour 99 Anisotropic superconductor 213, 221 288, 429, 457, 465, 483 Normal-state properties 119 Antiferromagnetic order 241 Frustration 39 Applications of high-7, Organic superconductor 1, 490 superconductors 378, 429, 483 Ginzburg-Landau theory 265 Oxygen diffusion 363 Glassy state 39 Oxygen ordering 389 Band structure 17 Grain alignment 327, 483 Oxygen stoichiometry 33, 156, 315 BCS model 255 Grain boundaries 119, 457, 465 Bi-2212 and 2223 oxides 74 Granular superconductivity 87, 205, Pair breaking 183 Bias sputtering 333 429, 465 Penetration depth 407 Bipolarons 471 Percolation model 395 Boson localization 340 Hall effect 119 Phase diagram 39, 156 Buffer layer 333 High-pressure effect 123, 246, 273 Phase-slip 109 High-pressure synthesis 6 Phonon-drag suppression 435 C6o compounds 21 Hole concentration 183 Phonon mechanism 255 Carrier concentration 191, 340, 371 HREM 191, 200, 378, 457 Plasma frequency 9 Carrier localization 33 HTSC/metal junctions 420 CO;,compounds 200 Hubbard Hamiltonian 162 Quantum correlations in HTSC 420 Coherence length 273 Compressibility 246 Infrared spectroscopy 9, 471 Raman scattering 297 Critical current density 26, 67,81, 213, Interblock coupling 74 Real-space pairing 129, 340 288, 327, 378, 457, 483 Iodine insertion 297 Resonators 228 Critical state model 81 Ionic model 129 Crystal defects Irradiation effect 57,71 Semiconductor substrates 497 -in Bi,Sr,CaCu,0, 61 Irreversibility line 74 Specific heat 265 Crystal field excitations 195 Spin fluctuations 162 Crystal structure 129 Josephson effect 213 Spin-lattice relaxation time 7, 1 Cu(2)-O(2) bond length 176 Josephson junction 259 Stage number 281 Cu-O planes 176 Structure 281 Large area deposition 497 -of Bap 6Ko4BiO; 191 DC-magnetron sputtering 114 Lattice parameters 389 -of Bi,Pb-Sr-Ca-—Cu-O 366 Defect structures 71, 114, 288 Layer force range 281 -of A-(BETS),GaCl, 490 Density of states 420 -of Nd,4,Ba,_,Cu;0745 145 Magnetic relaxation 99 -of Pr(Ba,_,Sr,.)2Cu,NbO,_, 241 EELS 145 Magnetic susceptibility 389, 413 -of RBa,Cu,O, 176 Electrical resistivity 71, 93, 109, 141, Magnetization 57,99, 145, 167, 259, -of R-Sr—Ce-—Cu-O (R=Pr, Nd, Sm-Gd, 156, 162, 241, 395, 435, 490 265, 407, 429 Dy-YbandY) 47 Electron-doped superconductor 156 —of (Tlo.sPbo.5)Sr,Ca,Cu3;0,_5 413 -of (Sr,_,Y,.) CuO, (x=0.00- Electronic structure 21, 246 -of Tl,BazCaCu,0,_; 413 0.30) 123 -—of HgBa,Ca,,_ ;Cu,02,+2 (n=4) 17 Magneto-optics 205 -of Tl, (Ba,_,Sr,)2CuO, (x=0.0, 0.4, Electron—phonon coupling 255 Magnetoresistance 109 0.35) 371 Eliashberg equations 255 Meissner effect 259, 490 -of T1,Ba,Ca,Cu;0;9_5 407 ESR 259 Metal-insulator transition 156 Substitution effects 21, 26, 176, 183, Exchange interactions 195 Microwave absorption 87, 233, 450 214, 315 Multilayers 93, 497 -of Lup ;Cap,5 BazCu3;307_5 402 Faraday effect 205, 327 -of Tbp.5Cap.; BazCu3;07_5 402 Fermi surface 17, 490 Negative-U centres 39 -of Tho.;Cap.; BazCu3;307_5 402 Fluctuation effects 93, 265, 273 Neutron diffraction 176, 315 Surface impedance 228, 450 Flux penetration 205, 327 NMR 1 Synthesis Analytic subject index -of (Bi,Cu)-1212 33 -of T1Ba,Sr4_,Cu,(CO;)O, 200 Uemura’s linear relation 420 -of Bi,Pb-Sr-—Ca—Cu-O 366 -of YBa,Cu,07_5-YBa,HfO,; ; 14] Upper critical field H,, 39 -of Bi,_,Pb,Sr,CaCu,0, 167 -of Bi(Pb)-Sr—Ca-Cu-O 26 Thermoelectric power 119, 435 Weak links 288, 435, 450 -of HgBa,Ca,Cu;0g45 6 Thermogravimetry 389 Wohlleben effect 87 -of R-Sr-Ce-Cu-O (R=Pr, Nd, Sm-Gd, Thin films 67, 333, 363, 402, 457, 497 Dy-YbandY) 47 XAFS 371 -—of GdBa,Cu;07_5 114 -of (Sr,_,Y,C.u)O, (x=0.00- -of YBCO 228 XPS 297 0.30) 123 Tunneling 420 X-ray diffraction 47,57, 61, 141, 297, -of (Tlo.sPbo.;)Sr2Ca,Cu;0, 413 Twin boundaries 288 366, 407 -of T1,Ba,Ca,Cu;0;9_5 407 Twins 81, 378 -of Tl,Ba,CaCu,0, 413 PHYSICA [i Physica C 219 (1994) 512 North-Holland Materials Index to Volume 219 Bao. 6Ko,4BiO; A-(BETS),GaCl, -substitution effects 402 -structure 191 -structure 490 Tho, sCao,5 BazCu307_ 5 (Bi,Cu)-1212 Lup sCap.s BazCu307_5 —substitution effects 402 -synthesis 33 -substitution effects 402 (Tlo,sPbo.5 )StzCazCu304 Bi,Pb-Sr—Ca—Cu-O -synthesis 413 -structure 366 Nd, +Baz_,Cu30745 (Tlo,sPbo,5 )StzCazCu30o9_ 5 -synthesis 366 —structure 145 —magnetization 413 Bi,Sr,CaCu,0, Tl, (Ba, _,Sr,.),CuO, -crystal defects 61 Pr( Ba, _xSI,)2Cu,NbOz_ , -structure 371 Bi,_,Pb,Sr,CaCu,0, -structure 241 T1,Ba,Ca,Cu30j9_5 -synthesis 167 -structure 407 Bi( Pb )-—Sr—Ca—Cu-—O RBa,Cu,O, -synthesis 407 -synthesis 26 -structure 176 T1,Ba,CaCu,O, R-Sr—Ce-—Cu-—O -synthesis 413 GdBa,Cu,;0, iil -structure 47 T1,Ba,CaCu,Og_ ; —thin films 114 -synthesis 47 —magnetization 413 TIBa,Sr4_,Cu2(CO;)O, HgBa,Ca,Cu308,5 -synthesis 200 (S r; — o )C uO, -synthesis 6 —structure 123 HgBa,Ca,,_ ;Cu,,O2,42 -synthesis 123 YBa,Cu,;0, oe s-YBa,HfO, ; -electronic structure 17 -synthesis 141 Tbo,sCao.5 BazCu307_5 PHYSICA Physica C 219 (1994) 513-514 North-Holland Cumulative Author Index from Volume 219 Ai, R., 219, 191 Faulques, E., 219, 297 Ivanenko, O.M., 219, 71 Akimitsu, J., 219, 200 Feng, Y., 219, 378 Iwasaki, H., 219, 265 Allenspach, P., 219, 145 Finkel’, V.A., 219, 273 Izumi, T., 219, 57 Androsov, V.V., 219, 71 Fliikiger, R., 219, 429 Antipov, E.V., 219, 47 Foldeaki, M., 219, 413 Jia, S., 219, 123 Aoki, S., 219, 333 Freeman, A.J., 219, 246 Johnson, S.T., 219, 61 Aomine, T., 219, 435 Fukami, T., 219, 435 Aoyagi, E., 219, 200 Fukuoka, A., 219, 33 Kallio, A., 219, 340 Apaja, V., 219, 340 Fukutomi, M., 219, 333 Kapitulnik, A., 219, 93 Funahashi, S., 219, 176 Kapustin, G.A., 219, 109 Badéche, T., 219, 395 Fung, K.K., 219, 457 Katano, S., 219, 176 Barilo, S.N., 219, 195 Kawaguchi, Y., 219, 176 Beasley, M.R., 219, 93 Gartstein, Yu.N., 219, 39 Kawashima, T., 219, 389 Behner, H., 219, 228 Gerbaux, X., 219, 9 Kemmler-Sack, S., 219, 167 Berberich, P., 219, 497 Gilchrist, J., 219, 67 Kessler, C., 219, 233 Berdahl, P., 219, 297 Gnanasekar, K.I., 219, 183 Kessler, P., 219, 167 Bettahi, A., 219, 395 Gnansekar, K.I., 219, 402 Khalfin, I.B., 219, 465 Bezotosniy, I.Y., 219, 71 Golovashkin, A.I., 219, 71 Kharlanov, A.L., 219, 47 Bhat, S.V., 219, 87 Golovin, V.N., 219, 273 Kikuchi, M., 219, 200 Blackstead, H.A., 219, 109 Gornik, E., 219, 228 Kinder, H., 219, 497 Bobrov, N.I., 219, 71 Grachev, V., 219, 395 Kleiner, V.Z., 219, 273 Boulesteix, C., 219, 395 Grigoryan, L., 219, 74 Kobayashi, N., 219, 265 Brom, H.B., 219, 1 Grivel, J.-C., 219, 429 Koblischka, M.R., 219, 205 Bryntse, I., 219, 47 Gupta, L.C., 219, 156, 183, 402 Komori, K., 219, 333 Burgin, T., 219, 490 Gupta, M., 219, 21 Kopnin, E.M., 219, 47 Gupta, R.P., 219, 21 Koshy, J., 219, 141 Carrington, A., 219, 119 Kramer, M.J., 219, 145 Carter, W.L., 219, 378 Habermeier, H.-U., 219, 233 Kronmiiller, H., 219, 205 Chatterjee, R., 219, 333 Hadni, A., 219, 9 Kubo, T., 219, 327 Chattopadhyay, T., 219, 195 Hamada, K., 219, 33 Kumar, N., 219, 87, 483 Chatzidimitriou-Dreismann, C.A.., Hamaguchi, Y., 219, 176 Kupfer, H., 219, 99 219, 420 Hardy, V., 219, 407 Kurian, J., 219, 141 Chowdury, A.J.S., 219, 61 Hatton, P.D., 219, 61 Kurihama, T., 219, 57 Christensen, N.E., 219, 17 Heinrich, A., 219, 471 Kuriyaki, H., 219, 288 Conradson, S.D., 219, 371 Hensel, B., 219, 429 Kusano, Y., 219, 366 Cooper, J.R., 219, 119 Hermann, A.M., 219, 413 Hervieu, M., 219, 407 Larbalestier, D.C., 219, 378 Damodaran, A.D., 219, 141 Hinks, D.C., 219, 191 Li, F.H., 219, 114 Daumling, M., 219, 429 Hirabayashi, M., 219, 6 Li, G.G., 219, 371 Derevyanko, V.V., 219, 273 Hiraga, K., 219, 200 Li, H.C., 219, 114, 457 De Rooy, J.C.J.M., 219, 1 Hirakawa, K., 219, 288 Li, J., 239, 123 Dong, C., 219, 123 Hor, P.H., 219, 281 Li, L., 219, 114, 457 Dorosinskii, L.A., 219, 81 Hriljac, J.A., 219, 315 Li, W., 219, 255 Dul€ic, A., 219, 233 Huffman, J.C., 219, 490 Lichte, H., 219, 167 Dumas, J., 219, 450 Liu, W., 219, 114 Ihara, H., 219, 6 Lombardo, L.W., 219, 93 Edelman, H.S., 219, 378 Ikeda, H., 219, 265 Lynn, J.W., 219, 195 Egawa, K., 219, 265 Ikeda, Y., 219, 366 Egi, T., 219, 366 Ishigaki, T., 219, 176 Maeda, H., 219, 333 Elesin, V.F., 219, 71 Ittyachan, M.A., 219, 141 Maignan, A., 219, 407 514 Cumulative author index Makarov, V.I., 219, 273 Platt, C.E., 219, 191 Umeda, M., 219, 327 Mal’shukov, A.G., 219, 39 Polyanskii, A.A., 219, 81 Umezawa, A., 219, 378 Mansot, J.-L., 219, 297 Ponomarenko, L.A., 219, 99 Urbach, J.S., 219, 93 Marfaing, J., 219, 395 Péykk36, S., 219, 340 Urland, W., 219, 471 Marks, L.D., 219, 191 Prakash, O., 219, 156 Usami, R., 219, 33 Marshall, A., 219, 61 Prusseit, W., 219, 497 Utz, B., 219, 497 Martin, C., 219, 407 Martynkin, A.Yu., 219, 99 Rao, C.N.R., 219, 87 Vijayaraghavan, R., 219, 183, 402 Matsuura, K., 219, 259 Rastogi, A., 219, 87 Vlasko-Vlasov, V.K., 219, 81 McCallum, R.W., 219, 145 Rauch, W., 219, 228 Mehring, M., 219, 233 Raveau, B., 219, 407 Wakata, M., 219, 33 Ming, R.F., 219, 114 Reddy, Y.S., 219, 26, 483 Wang, C.A., 219, 114, 457 Minh-Tien, T., 219, 162 Ren, H.T., 219, 221 Wang, J., 219, 33 Mitsen, K.V., 219, 71 Ren, J., 219, 490 Wang, R.L., 219, 114, 457 Miyoshi, K., 219, 265 Rentschler, T., 219, 167 Wang, Y.Y., 219, 191 Molinié, P., 219, 297 Revenaz, S., 219, 450 Wang, Z., 219, 255 Montgomery, L.K., 219, 490 Riley Jr., G.N., 219, 378 Wanklyn, B.M., 219, 61 Moodenbaugh, A.R., 219, 315 Riischer, C.H., 219, 471 Weht, R., 219, 17 Mori, K., 219, 176 Rybachuk, V.A., 219, 99 Weissmann, M., 219, 17 Mryasov, O.N., 219, 246 Whangbo, M.-H., 219, 490 Muraoka, Y., 219, 200 Sarkar, B., 219, 26 White, W.R., 219, 93 Murashov, V.A., 219, 99 Scherer, T., 219, 363 Willis, T.C., 219, 378 Muroi, M., 219, 129 Schuster, Th., 219, 205 Mustre de Leon, J., 219, 371 Shapiro, B.Ya., 219, 465 Xia, J.A., 219, 221 Muto, H., 219, 259 Sharma, R.G., 219, 26, 483 Xianxi, D., 219, 281 Sharma, S.K., 219, 483 Xie, H., 219, 145 Nagarajan, R., 219, 87, 183 Sharon, M., 219, 183, 402 Xiong, X., 219, 340 Nakagawa, Y., 219, 327 Shi, D.L., 219, 191 Xu, T., 219, 255 Nakajima, S., 219, 200 Shukla, S.R., 219, 483 Xu, Y., 219, 315 Nakajima, T., 219, 57 Simon, Ch., 219, 407 Nanba, T., 219, 366 Singh, O.G., 219, 156 Narlikar, A.V., 219, 156 Skripov, A.V., 219, 1 Yadava, Y.P., 219, 141 Yakushi, K., 219, 74 Nebendahl, B., 219, 233 Suba, K., 219, 156 Yamashita, M., 219, 57 Nguyen, T.P., 219, 297 Subramanian, M.A., 219, 371 Yamauchi, H., 219, 33 Nikitenko, V.I., 219, 81 Sumarlin, I.W., 219, 195 Yan, D., 219, 255 Noguchi, Y., 219, 6 Suzuki, Y., 219, 327 Yan, Y.F., 219, 61 Novikov, D.L., 219, 246 Syono, Y., 219, 200 Yang, H.D., 219, 241 Ogawa, M., 219, 200 Tai, Y., 219, 259 Yao, Y., 219, 123 Yelon, W.B., 219, 145 Ohnishi, N., 219, 200 Takada, J., 219, 366 Yokoyama, Y., 219, 327 Ohshima, E., 219, 200 Takano, M., 219, 366 Oku, T., 219, 200 Takano, S., 219, 33 Yoo, S.1., 219, 145 Osvaldo Rodriguez, C., 219, 17 Takayama-Muromachi, E., 219, 389 Yoshida, S., 219, 327 Yoshizaki, R., 219, 265 Ovcharenko, O.N., 219, 273 Tamhane, A.S., 219, 183, 402 Ozawa, H., 219, 6 Tanaka, E., 219, 288 Tanaka, Y., 219, 213 Zhang, J.P., 219, 191 Padalia, B.D., 219, 156 Taylor, K.N.R., 219, 221 Zhang, Y., 219, 191 Pai, S.P., 219, 402 Tello, R., 219, 413 Zhao, Z., 219, 123 Panagopoulos, C., 219, 435 Tereshina, N.S., 219, 273 Zhao, Z.X., 219, 61 Pandya, D.K., 219, 483 Thomas, J.K., 219, 141 Zheng, X., 219, 288 Paranthaman, M., 219, 413 Tokiwa, K., 219, 6 Zhigunov, D.I., 219, 195 Parrell, J.A., 219, 378 Tokumoto, M., 219, 6 Zhou, W.L., 219, 457 Peligrad, D.-N., 219, 233 Tomokiyo, Y., 219, 288 Zhou, X., 219, 123 Peltzer y Blanca, E.L., 219, 17 Tsay, H.L., 219, 241 Zhou, Y.Q., 219, 457 Pinto, R., 219, 183, 402 Tsuruta, K., 219, 57 Zhukov, A.A., 219, 99

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