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Physica C: Superconductivity 1997: Vol 276 Index PDF

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NH, Fis PHYSICA ( as ELSEVIER Physica C 276 (1997) 321-323 Author Index to Volume 276 Antipov, E.V., see Gippius, A.A., 276, 57 Davydov, V., see Grekhov, I., 276, 18 Antipov, E.V., see Kazakov, S.M., 276, 139 Delimova, L., see Grekhov, I., 276, 18 Diko, P., H. Kojo and M. Murakami, Microstructure of Nd—Ba- Cu-—O superconductors prepared by the oxygen-controlled- Bando, Y., see Kawahara, T., 276, 127 melt-growth method, 276, 185 Banerjee, S.S., see Ravikumar, G., 276, 9 Dorbolo, S., Answer to comment on the paper of S. Dorbolo et Baran, M., see Dyakonov, V., 276, 245 al., Physica C 267 (1996) 24—30 entitled: Influence of Van Barbanera, S., see Boffa, V., 276, 218 Hove singularity on the electronic specific heat of high-7, Baydakova, M., see Grekhov, I., 276, 18 superconductors, 276, 175 Beaugnon, E., see Gautier-Picard, P., 276, 35 Doroshenko, N., see Dyakonov, V., 276, 245 Berastegui, P., see Gatt, R., 276, 270 Dou, S.X., see Li, S., 276, 229 Bhattacharya, S., see Ravikumar, G., 276, 9 Duc, F., see Bordet, P., 276, 237 Blatter, G., see Morais Smith, C., 276, 42 Dyakonov, V., I. Fita, N. Doroshenko, M. Baran, S. Piechota Boffa, V., T. Petrisor, L. Ciontea, U. Gambardella and S. and H. Szymczak, Insulator—superconductor transition in Barbanera, High-quality surface YBCO thin films prepared NdBa,Cu,0,¢ 7 ceramics under pressure, 276, 245 by off-axis pulsed laser deposition technique, 276, 218 Bok, J. and J. Bouvier, Comment on the paper of S. Dorbolo et Eastell, C.J., see Moore, J.C., 276, 202 al. Physica C 267 (1996) 24—30 entitled: Influence of van Eeltsev, Yu., see Gatt, R., 276, 270 Hove singularity...., 276, 173 Ehmann, A., see Glaser, J., 276, 91 Bordet, P., S. LeFloch, C. Chaillout, F. Duc, M.F. Gorius, M. Endo, A. and Y. Shiohara, Preferred orientation of Y,BaCuO, Perroux, J.J. Capponi, P. Toulemonde and J.L. Tholence, particles entrapped by melt-textured YBa,Cu,0,_5 crys- AuBa,(Y,_ ,,Ca,)Cu,0,: a new superconducting gold tals, 276, 25 cuprate with 7, above 80 K, 276, 237 Er, G., S. Kikkawa, M. Takahashi and F. Kanamaru, XANES Borevich, V., see Grekhov, I., 276, 18 study on electron doped infinite-layer Sr,_ ,La,CuO, (0 < x Bouvier, J., see Bok, J., 276, 173 < 0.12) and (Sr,_ ,Ca,La)g o;Cu O, (0 < y < 0.20) super- Bozio, R., see Pedron, D., 276, | conductors, 276, 315 Bryntse, I., see Gatt, R., 276, 270 Feng, Q.R., see Guo, J.D., 276, 277 Caldeira, A.O., see Morais Smith, C., 276, 42 Fita, I., see Dyakonov, V., 276, 245 Cantoni, M., Y. Tanaka, M. Ishizuka and S. Horiuchi, Mi- Fox, S., see Moore, J.C., 276, 202 crostructure evolution in high-7, Bi(Pb)-2223 /Ag(Hf) tapes, Fujihara, S., N. Yoshida and T. Kimura, Preparation of 94 276, 259 K-superconducting NdBa,Cu,O0,_; without post-anneal in Capponi, J.J., see Bordet, P., 276, 237 oxygen, 276, 69 Capponi, J.J., see Kazakov, S.M., 276, 139 Casafi-Pastor, N., see Ondono-Castillo, S., 276, 251 Gambardella, U., see Boffa, V., 276, 218 Chaillout, C., see Bordet, P., 276, 237 Gao, W., see Li, S., 276, 229 Chaillout, C., see Kazakov, S.M., 276, 139 Gatt, R., E. Olsson, A. Morawski, T. Lada, A. Paszewin, I. Chandrasekhar Rao, T.V., see Ravikumar, G., 276, 9 Bryntse, A.M. Grishin, Yu. Eeltsev, P. Berastegui and L.-G. Chen, J., see Chen, W.M., 276, 132 Johansson, Hg-1212 and Hg-1223 single crystals: synthesis Chen, T.-M., see Lu, T.R., 276, 75 and characterisation, 276, 270 Chen, W.M., J. Chen and X. Jin, A modified function of the Gautier-Picard, P., E. Beaugnon and R. Tournier, In-situ formula of double iodometric titration, 276, 132 YBa,Cu,O, growth rate analysis, 276, 35 Chen, Y.C., see Lin, C.W., 276, 225 Gippius, A.A., E.V. Antipov, W. Hoffmann and K. Liders, Ciontea, L., see Boffa, V., 276, 218 Nuclear quadrupole interactions and charge localization in Conder, K., see Schwer, H., 276, 281 HgBa,CuO,, 5 with different oxygen content, 276, 57 322 Author Index to Volume 276 Glaser, J., A. Ehmann, B. Seling, S. Lésch, P. Zoller, W. Kondo, W., see Manabe, T., 276, 160 Wischert, S. Kemmler-Sack, J. Linhart and W. Reimers, Kopnin, E., see Schwer, H., 276, 281 Substitution and magnetic properties of Pb-1212, 276, 91 Kopnin, E.M., see Kazakov, S.M., 276, 139 Goringe, M.J., see Moore, J.C., 276, 202 Kouvel, J.S., see Hasan, M.K., 276, 289 Gorius, M.F., see Bordet, P., 276, 237 Kozlowski, G., C. Varanasi, I. Maartense and C.E. Oberly, Use Grekhov, I., M. Baydakova, V. Borevich, V. Davydov, L. of high density Y, BaCuO, substrates in the melt processing Delimova, I. Liniichuk and A. Lyublinsky, A new buffer of YBa,Cu,0,_, bars with high transport critical current, layer for high-quality HTSC ultrathin film fabrication, 276, 276, 197 18 Kuk, I.-H., see Kim, C.-J., 276, 101 Grishin, A.M., see Gatt, R., 276, 270 Kumagai, T., see Manabe, T., 276, 160 Grovenor, C.R.M., see Moore, J.C., 276, 202 Kuwata, S. and W. Kinase, One dimensionality of the modu- Grover, A.K., see Ravikumar, G., 276, 9 lated structure in Pb-doped Bi-based high-7, superconduc- Guo, J.D., G.C. Xiong, D.P. Yu, Q.R. Feng, X.L. Xu, G.J. Lian tors, 276, 120 and Z.H. Hu, Preparation of superconducting HgBa,CaCu) - O, films with a zero-resistance transition temperature of 121 Lada, T., see Gatt, R., 276, 270 K, 276, 277 Lanucara, M., see Silva, E., 276, 84 Lee, Y.-S., see Kim, C.-J., 276, 101 LeFloch, S., see Bordet, P., 276, 237 Haga, Y., see Ravikumar, G., 276, 9 Li, S., W. Gao, Q.Y. Hu, H.K. Liu and S.X. Dou, The effect of Hasan, M.K. and J.S. Kouvel, Vortex flux creep in polycrys- silver sheath on annealing texture of (Bi,Pb),Sr,Ca,Cu,- talline YBCO following rotations in magnetic fields, 276, O94, Superconductor tapes, 276, 229 289 Lian, G.J., see Guo, J.D., 276, 277 Hedo, M., see Ravikumar, G., 276, 9 Lin, C.W., J.-Y. Lin, H.D. Yang, T.H. Meen, H.L. Tsay, Y.C. Hoffmann, W., see Gippius, A.A., 276, 57 Chen, J.C. Huang, S.R. Sheen and M.K. Wu, Synthesis of Hong, G.-W., see Kim, C.-J., 276, 101 PrBa,Cu,O, at ambient oxygen pressure, 276, 225 Horiuchi, S., see Cantoni, M., 276, 259 Lin, J.-Y., see Lin, C.W., 276, 225 Hu, Q.Y., see Li, S., 276, 229 Linhart, J., see Glaser, J., 276, 91 Hu, Z.H., see Guo, J.D., 276, 277 Liniichuk, I., see Grekhov, I., 276, 18 Huang, J.C., see Lin, C.W., 276, 225 Liu, H.K., see Li, S., 276, 229 Hyland, D.M.C., see Moore, J.C., 276, 202 Lésch, S., see Glaser, J., 276, 91 Lu, T.R. and T.-M. Chen, Structural and superconducting prop- Inada, Y., see Ravikumar, G., 276, 9 erties of phases in the underdoped Y,(Ba, _ ,Sr,),Cu7zO,4,5 Ishizuka, M., see Cantoni, M., 276, 259 system: The evidence for a chemical pressure effect, 276, 75 Liiders, K., see Gippius, A.A., 276, 57 Jin, X., see Chen, W.M., 276, 132 Lyublinsky, A., see Grekhov, I., 276, 18 Johansson, L.-G., see Gatt, R., 276, 270 Jun, J., see Schwer, H., 276, 281 Maartense, I., see Kozlowski, G., 276, 197 Manabe, T., I. Yamaguchi, S. Nakamura, W. Kondo, S. Mizuta Kanamaru, F., see Er, G., 276, 315 and T. Kumagai, Carbon dioxide controlled annealing method Karpinski, J., see Schwer, H., 276, 281 for preparation of YBa,Cu,O,_ , films by dipping-pyrolysis Kawahara, T., N. Sugiuchi, E. Komai, T. Terashima and Y. process, 276, 160 Bando, Hole and electron doping in ultrathin films with the Marcon, R., see Silva, E., 276, 84 infinite layer structure by electric field effect, 276, 127 Marezio, M., see Kazakov, S.M., 276, 139 Kazakov, S.M., S. Pachot, E.M. Kopnin, S.N. Putilin, E.V. Meen, T.H., see Lin, C.W., 276, 225 Antipov, C. Chaillout, J.J. Capponi, P.G. Radaelli and M. Meijer, G.I., see Schwer, H., 276, 281 Marezio, Synthesis, neutron diffraction study and cation Meng, R., see Yu, F., 276, 295 substitutions in Sr,,_ ,Cu,,, ,O,,, (m = 3, 5), 276, 139 Mishra, P.K., see Ravikumar, G., 276, 9 Kemmler-Sack, S., see Glaser, J., 276, 91 Mizuta, S., see Manabe, T., 276, 160 Kikkawa, S., see Er, G., 276, 315 Molinski, R., see Schwer, H., 276, 281 Kim, C.-J., Y.-S. Lee, H.-S. Park, I.-H. Kuk, T.-H. Sung, J.J. Moore, J.C., D.M.C. Hyland, C.J. Salter, C.J. Eastell, S. Fox, Kim and G.-W. Hong, Oxidation induced formation of a—b C.R.M. Grovenor and M.J. Goringe, Microstructure and planar defects in melt-textured YBa,Cu,0,_, containing phase development in melt processed Tl-1223 tapes, 276, Y,BaCuO, inclusions, 276, 101 202 Kim, J.J., see Kim, C.-J., 276, 101 Morais Smith, C., A.O. Caldeira and G. Blatter, Relaxation rates Kimura, T., see Fujihara, S., 276, 69 of flux-lines and flux-pancakes in the presence of correlated Kinase, W., see Kuwata, S., 276, 120 disorder, 276, 42 Kojo, H., see Diko, P., 276, 185 Morawski, A., see Gatt, R., 276, 270 Komai, E., see Kawahara, T., 276, 127 Murakami, M., see Diko, P., 276, 185 Author Index to Volume 276 Nakamura, S., see Manabe, T., 276, 160 Shiohara, Y., see Endo, A., 276, 25 Silva, E., M. Lanucara and R. Marcon, Microwave surface Oberly, C.E., see Kozlowski, G., 276, 197 resistance peak at 7, in Bi,Sr,CaCu,O,, , film, 276, 84 Olsson, E., see Gatt, R., 276, 270 Sugiuchi, N., see Kawahara, T., 276, 127 Ondono-Castillo, S. and N. Casafi-Pastor, Thermal and mechani- Sun, A.M., see Qin, M.J., 276, 167 cal effects on the properties of YBa,Cu,0,_, deposits Sunandana, C.S., see Suvarna, A.M., 276, 65 obtained by electrodeposition of precursors in presence of Sung, T.-H., see Kim, C.-J., 276, 101 cyanide, 276, 251 Suvarna, A.M. and C.S. Sunandana, ESR of DPPH decorated Onuki, Y., see Ravikumar, G., 276, 9 CuO: a phase transition study, 276, 65 Szymczak, H., see Dyakonov, V., 276, 245 Pachot, S., see Kazakov, S.M., 276, 139 Park, H.-S., see Kim, C.-J., 276, 101 Takahashi, M., see Er, G., 276, 315 Paszewin, A., see Gatt, R., 276, 270 Tanaka, Y., see Cantoni, M., 276, 259 Patil, N.G., see Ravikumar, G., 276, 9 Terashima, T., see Kawahara, T., 276, 127 Pedron, D., G. Visentini, R. Bozio, J.M. Williams and J.A. Tholence, J.L., see Bordet, P., 276, 237 Schlueter, Phonon dynamics and superconductivity in the Toulemonde, P., see Bordet, P., 276, 237 organic crystal x-(BEDT-TTF),Cu[N(CN)]B,r , 276, 1 Tournier, R., see Gautier-Picard, P., 276, 35 Perroux, M., see Bordet, P., 276, 237 Tsay, H.L., see Lin, C.W., 276, 225 Petrisor, T., see Boffa, V., 276, 218 Piechota, S., see Dyakonov, V., 276, 245 Varanasi, C., see Kozlowski, G., 276, 197 Putilin, S.N., see Kazakov, S.M., 276, 139 Visentini, G., see Pedron, D., 276, | Qin, M.J., X.N. Xu, A.M. Sun, X.X. Yao, J.P. Zuo and S.Z. White, K.W., see Yu, F., 276, 295 Yang, Magnetic response of disk shaped YBa,Cu,0,_5 Williams, J.M., see Pedron, D., 276, 1 thin film to a perpendicular magnetic field, 276, 167 Wischert, W., see Glaser, J., 276, 91 Wu, M.K., see Lin, C.W., 276, 225 Radaelli, P.G., see Kazakov, S.M., 276, 139 Ramakrishnan, S., see Ravikumar, G., 276, 9 Xiong, G.C., see Guo, J.D., 276, 277 Ravikumar, G., T.V. Chandrasekhar Rao, P.K. Mishra, V.C. Xu, X.L., see Guo, J.D., 276, 277 Sahni, S. Saha, S.S. Banerjee, N.G. Patil, A.K. Grover, S. Xu, X.N., see Qin, M.J., 276, 167 Ramakrishnan, S. Bhattacharya, E. Yamamoto, Y. Haga, M. Hedo, Y. Inada and Y. Onuki, Effect of field inhomogeneity Yamaguchi, I., see Manabe, T., 276, 160 on the magnetisation measurements in the peak effect region Yamamoto, E., see Ravikumar, G., 276, 9 of CeRu, superconductor, 276, 9 Yang, H.D., see Lin, C.W., 276, 225 Reimers, W., see Glaser, J., 276, 91 Yang, S.Z., see Qin, M.J., 276, 167 Rentschler, T., Doping of the quadruple perovskites of type Yao, X.X., see Qin; M.J., 276, 167 Nd,Ba,Cu,Ti,_ ,.M,O,,, M = Mn, Fe, Co, Al and Yoshida, N., see Fujihara, S., 276, 69 NdBa,Cu, ,,NbT,_i ,,O, ,, 276, 109 Yoshinari, Y., Anisotropy of the Knight shift at planar oxygen Rossel, C., see Schwer, H., 276, 281 sites in YBa,Cu,O,: Possible location of the doped holes, 276, 147 Saha, S., see Ravikumar, G., 276, 9 Yu, D.P., see Guo, J.D., 276, 277 Sahni, V.C., see Ravikumar, G., 276, 9 Yu, F., K.W. White and R. Meng, Mechanical characterization Salter, C.J., see Moore, J.C., 276, 202 of top-seeded melt-textured YBa,Cu,0,_,5 single crystal, Schlueter, J.A., see Pedron, D., 276, 1 276, 295 Schwer, H., E. Kopnin, R. Molinski, J. Jun, G.I. Meijer, K. Conder, C. Rossel and J. Karpinski, Effect of Pb doping on Zhu, B.Y., Pinning, thermal fluctuation and Hall effect in the the structure of HgBa,CuO,, 5 single crystals, 276, 281 mixed state: a numerical study, 276, 309 Seling, B., see Glaser, J., 276, 91 Zoller, P., see Glaser, J., 276, 91 Sheen, S.R., see Lin, C.W., 276, 225 Zuo, J.P., see Qin, M.J., 276, 167 PHYSICA ( ELSEVIER Physica C 276 (1997) 324-325 Analytic Subject Index to Volume 276 Ac-susceptibility Electronic specific heat 175 Magnetic susceptibility —of AuBa,(Y,_ ,,Ca,)Cu,0, 237 Electronic structure —of Y,(Ba,_ ,Sr,)4Cu,O,4,5 75 Amorphous phase 259 -—of YBa,Cu,O, 147 Magnetization Annealing Entrapment -of CeRu, 9 -—of HgBa,CaCu,O, films 277 —of Y,BaCuO, particles 25 -of NdBa,Cu,0,_; 69 -of YBa,Cu,0,_, 160 Mechanical characterization Applications of high-7, superconductors Field inhomogeneity 9 -of YBA,Cu,0,_; single crystal 295 127 Flexural strength Melt processing -of YBA,Cu,Q,_; single crystal 295 -of TIBi-1223 tapes 202 Band structure 175 Flux creep 42 —of YBa,Cu,0,_, bars 197 -in YBCO disk 289 Melt texturing Carbon dioxide partial pressure 160 Flux density profiles 167 -of YBa,Cu,0,_, 101 Charge localization Flux density Microcracking 185 -in HgBa,CuO,,; 57 -in YBCO disk 289 Microstructure Charge redistribution Flux pinning 42, 309 —of Bi(Pb)-2223 /Ag(Hf) tape 259 -in NdBa,Cu,0,6 7 245 Fracture toughness —of Nd-Ba-Cu-O superconductors 185 -of YBA,Cu,0,_, single crystal 295 —of TIBi-1223 tapes 202 Chemical pressure effect 75 Chemical solution process 160 Frequency dependence 84 -of YBa,Cu,0,_, 101 Microstructures Critical current density 167 -in NdBa,Cu,0,_,; 69 Grain alignment (texturing) 35 —of (Bi,Pb),Sr,Ca,Cu,0,9,, 229 —of Bi(Pb)-2223 /Ag(Hf) tape 259 —in (Bi,Pb),Sr,Ca,Cu,0,9,, 229 Mixed state 309 -of YBCO thin film 218 —of Y,BaCuO, particles 25 Modulated structure Critical current Growth rate analysis 35 —of Bi2212/Pb 120 -—of YBa,Cu,O,_ , bars 197 Critical state model 9, 167 HRTEM NMR Cu-O chains 225 —on Bi(Pb)-2223 /Ag(Hf) tape 259 -—of YBa,Cu,0O, 147 CuO planes Hall effect 42, 309 NQR -in YBa,Cu,0O, 147 High-pressure synthesis —in HgBa,CuOQ,,; 57 -of Y,(Ba,_ ,Sr,),Cu,O,4,5 75 Neutron diffraction Defect structure 281 Hole concentration 127 —on (Pbo 75CUg.25)CSaIo 22CYuo,0 , 91 -in YBa,Cu,O, 147 2D electron-hole lattice 120 —on Sr,,_ ,;Cu,,, ,;O2, 139 2D-superconductor 175 Infinite-layer 315 Off-axis PLD 218 ESR of DPPH decorated CuO 65 Iodometric titration function 132 Organic superconductor | Electric resistivity Irradiation effect 42 Oxygen ordering 245 -—of SrCuO,_ ; 127 Oxygen partial pressure 160 Electrical resistivity Liquid phase epitaxy 270 Oxygen stoichiometry 132 -of HgBa,CaCu,O, films 277 Local polarization 120 —in Hg99Pb, ,;Ba,CuO,,; 281 -of PrBa,Cu,0, 225 -in HgBa,CuO,,; 57 -of Y,(Ba,_ ,Sr,),CuzO,4,5 75 Magnetic phase transitions in DPPh deco- -in HgBa,CuO,,; 281 -of YBCO thin film 218 rated CuO 65 Electrodeposition 251 Magnetic properties Electron—phonon coupling -of (Pbo 75CUg 25)St,Yo.gCao,Cu,0, 91 Peak effect 9 —in k-(BEDT-TTF),Cu[N(CN),]Br 1 Magnetic rodent Phase development Electron-doped superconductor 127, 315 —of YBa,Cu,0,_, thin film 167 —in TIBi-1223 tapes 202 Analytic Subject Index to Volume 276 Phonon spectrum -of HgBa,CaCu,O, films 277 Texture 197 -of x-(BEDT-TTF),Cu[N(CN)J,B r l —of HgBa,CuO,,; 281 Thermal fluctuation 309 Planar defects —of Nd, Ba,Cu,Ti,_ ,.M,O,,:109 Thermal microstresses 185 ~in YBa,Cu,0,_, 101 —of NdBa,;Cu,,NTbi,_, ,,O, , 109 Thermal treatment Pressure effect 245 —of PrBa,Cu,O, 225 —of YBa,Cu,0,_; deposits 251 Pressure effects 251 -of Sr,_ ,Cu,,, ,;O,,, 139 Thin films 127 Processing of superconductors 229 -of Y,(Ba,_ ,Sr,),Cu,;O,4,5 75 -of YBa,Cu,0,_, 160 -of YBCO ultrathin film 18 Tilt-type subgrain boundary 259 Raman scattering Substitution effects Transmission electron microscopy —in k-(BEDT-TTF),Cu[N(CN)],B r —in (Pb 75Cug 95)StYo gCag,Cu,0, 91 -—of HgBa,Ca,Cu,0,,;5 270 Resistivity transition Superconducting transition -—of HgBa,CaCu,0,, 5 270 -in Bi,Sr,CaCu,O,,, film 84 —of NdBa,Cu,0,6 7 245 Surface resistance SEM -af Bi,Sr,CaCu,O,, , film 84 Undercooling method 25 —of YBCO thin film 218 Susceptibility of DPPH decorated CuO 65 Scanning electron microscopy Synthesis -of HgBa,Ca,Cu,0,,5 270 —of AuBa,(Y,_ ,,Ca,)Cu,0, 237 Van Hole singularity 175 -of HgBa,CaCu,0,, 5 270 —of HgBa,Ca,Cu,0,, 5 270 Silver substrate 25] -—of HgBa,CaCu,O, films 277 Single-crystal growth —of HgBa,CaCu,0,, 5 270 X-ray diffraction -of YBa,Cu,0, 35 —of Nd-Ba-Cu-O superconductors 185 -—of Hgo Pb, ,Ba,CuO,,; 281 Sol—gel process 69 -—of Nd,Ba,Cu,Ti,_ ,M,O,,:109 -—of HgBa,CuO,,; 281 Solubility range —of NdBa,Cu,0,_; 69 —on (Pbo 75CUg 95)SI2YogCag»Cu,0, 91 —of Sr,_ .Nd,Cu,Oj9 139 -of NdBa,Cu,,TNbi,_, ,,O, , 109 XANES study Stripe configuration 120 —of PrBa,Cu,O, 225 -on (Sr,_ ,Ca,)o9Lag ;CuO, 315 Structure -of Sr,_ ,Cu,,, ;O,,, 139 —on Sr, _ _La,CuO, 315 —of AuBa,(Y,_ ,,Ca,)Cu,0, 237 -—of YBCO ultrathin film 18 XRD -—of Hgo9Pbp ,Ba,CuO,,; 281 -of YBa,Cu,0O, 35 ~in YBCO thin film 218 PHYSICA ( ELSEVIER Physica C 276 (1997) 326 Materials Index to Volume 276 AuBa,(Y,_ ,,Ca,)Cu,0, —oxygen stoichiometry 281 —microstructure 202 —ac-susceptibility 237 —structure 281 —phase development 202 —structure 237 -x-ray diffraction 281 —synthesis 237 Y,(_, SBr,)4aCu7,O1 445 Nd-Ba-Cu-O superconductors —electrical resistivity 75 k-(BEDT-TTF),Cu[N(CN), JBr ~—microstructure 185 —high-pressure synthesis 75 —electron—phonon coupling | —synthesis 185 —magnetic susceptibility 75 —phonon spectrum | Nd, Ba,Cu,Ti,_ .M,O,,:109 —structure 75 Y,BaCuO, particles —raman scattering | —structure 91 Bi(Pb)-2223 /Ag(Hf) tape —synthesis 91 —entrapment 25 —grain alignment (texturing) 25 —critical current density 259 NdBa,Cu,0,6 7 YBA,Cu,0,_, single crystal -hRTEM 259 —charge redistribution 245 —microstructure 259 —superconducting transition 245 —flexural strength 295 Bi2212/Pb NdBa,Cu,0,_5 —fracture toughness 295 —modulated structure 120 —critical current density 69 —mechanical characterization 295 (Bi,Pb), Sr,Ca,Cu,0 19, , —magnetization 69 YBCO disk —grain alignment (texturing) 229 —synthesis 69 —flux creep 289 —microstructures 229 NdBa,Cu,Ti,, ,Nb,_,O,, —flux density 289 Bi,Sr,CaCu,Og, , film —structure 109 YBCO thin film —resistivity transition 84 —synthesis 109 —critical current density 218 —surface resistance 84 —electrical resistivity 218 —-SEM 218 (Pbo 75CUo.25)St2Yo.2gCCua,y0, CeRu, —magnetic properties 91 -XRD 218 —magnetization 9 —neutron diffraction 91 YBCO ultrathin film —substitution effects 91 —structure 18 Hg o.9Pbo ,Ba,Cu0,, -x-ray diffraction 91 —synthesis 18 —oxygen stoichiometry 281 PrBa,Cu,O, YBa,Cu,0, —structure 281 —electrical resistivity 225 —cuO planes 147 -x-ray diffraction 281 —structure 225 —electronic structure 147 HgBa,Ca,Cu,0,,5 —synthesis 225 —hole concentration 147 —scanning electron microscopy 270 —nMR 147 —synthesis 270 (Sr,_ ,Ca,)o.gLag ,CuO, —single-crystal growth 35 —transmission electron microscopy 270 -xANES study 315 —synthesis 35 HgBa,CaCu,O, films YBa,Cu,0,_, deposits Sr,,- Cu, + 192, —annealing 277 —neutron diffraction 139 —thermal treatment 251 —electrical resistivity 277 —structure 139 YBa,Cu,0,_, thin film —structure 277 —synthesis 139 —magnetic rodent 167 —synthesis 277 Sr,_ ,La,CuO, YBa,Cu,0,_, bars HgBa,CaCu,0, ,5 -~xANES study 315 —critical current 197 —scanning electron microscopy 270 Sr,_ ,Nd ,Cu,0,5 —melt processing 197 —synthesis 270 -solubility range 139 YBa,Cu,0,_, —transmission electron microscopy 270 SrCuO,_ 5 —annealing 160 HgBa,CuO,, 5 —electric resistivity 127 —melt texturing 101 —charge localization 57 —microstructure 10] —nQR 57 TIBi-1223 tapes —planar defects 101 —oxygen stoichiometry 57 —melt processing 202 —thin films 160

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