Analytic Subject index to volume 212

Analytic Subject index to volume 212

PHYSICAG Physica C 212 (1993) 501. -502 North-Holland Analytic Subject Index to Volume 212 AC susceptibility 43, 199, 216, 266, 292, 352, 389 Anisot...

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PHYSICAG

Physica C 212 (1993) 501. -502 North-Holland

Analytic Subject Index to Volume 212 AC susceptibility 43, 199, 216, 266, 292, 352, 389 Anisotropic superconductor 332, 389 Antiferromagnetic order 413 Applications Applications -of high-To superconductors 23, 66, 395 ARPES 347 Band structure 347, 375 BCSmodel 81 Bipolarons 1

C6ocompounds 19 Carrier concentration 142, 375 Cluster calculation 407 Coulomb interactions 465 Critical current density 6, 23, 61, 66, 95, 110, 211,279, 301,323,332, 339, 395 Critical phenomena 440 Critical state model 6, 133, 21 I, 216, 395 Cud2 plane 375 Cu-O chains 487 Cu-O planes 347 Cu valence 206 Density of states

119,228

Electricalresistivity 1, 191,206,470, 478 Electronic structure 128, 306, 407,465 -of HgBa2CuO4 228 -of HgBa2CuO4+~ 233 Eliashbergtheory 173 Energy dispersive X-ray spectroscopy 279 Fermi surface 228,233 Filamentory superconductivity -of Mg2_yTil +yO4 95 Fluctuation effects 61,332, 419,424, 440 Flux creep 23 Flux distribution 211 Flux dynamics 133, 292 Flux lattice 155,419 Flux noise 352 Flux pinning 61,407, 424

Ginzburg-Landau theory 19 Grain alignment 66, 372 Grain alignment (texturing) 23 Grain boundaries 185 Granular superconductivity 19, 43, 352 Hall effect 142 High resolution EELS 185 Hole depletion 185 HREM 199, 223,239, 274 Hydrogen reaction 435 Incommensurate structure 413 Infrared reflectivity 173 Infrared spectroscopy 37 Intercalation 191 Irradiation effect 128 Irreversibilityline 6, 424 Josephsoneffect

61

Kosterlitz-Thoulesstransition

155

Lower critical field H¢~ 301 Magnetic polaron 375 Magnetic relaxation 133, 292 Magnetic shielding 395 Magnetic susceptibility 32, 43, 164, 169, 271,372, 440 Magnetization 6, 133,279, 301,419 Magnetoresistance 459 Metal-insulator transition 119 -in YBa2CusO~ 365 MOCVD 101 Molecular orbital method 407 Multilayers 81 Neutron diffraction 259 Neutron scattering 142,413 Non-ohmic behaviour 43, 95, 133, 292 Normal-state properties 1,372 NQR 317 Optical conductivity 173 Optical spectroscopy 365 O-T transition 119, 451 Oxygen diffusion 470, 478,487

Oxygen ordering 317 Oxygen stoichiometry 75,365,381,435, 470, 478,487 Paramagneticimpurity effect 173 Penetration depth 19, 389 Percolation model 323 Peritectic point 32 Phase diagram 435 Photon-induced superconductivity 128 Proximity effect 81 Structure -of Bi2Sr2CaCu20, (IBr)x/2 191 -of Bi2Sr6_xCu3Oto (CO3) 2 199 -of Bi(Pb)-Sr-Ca-Cu-O 37 -ofBi-Sr-Ca-Cu-O 151 -ofHgBa2CuO4+a 223,259 -of HgBaO2 259 -of (Pb,Cu) (Sr,Ln)z(Ln,Ce)2Cu20 z (Ln = Sm, Eu, Gd, Dy and Ho) 75 -ofSr-Ca-Cu-O 164 -of Tl2HgBa4Cu2Oio+ v 274 -ofYo.6Cao.4Ba2Cu2Hgl _xMxO6+y 239 -of YBa2Cu3_~SnxOT_a 279 -of YSr2Cu2.7Mo.3Oy (M = Mo and W) 451 Substitution effects 169,407 -in Bi2_xSb~r2Ca2Cu30 v 381 -in La2_ySryCul _xM~O4, YBa2 (Cul_~Zn~,) sO6+y 142 -in LasCa~Ba4_xCuTOy 32 -in (Pb,Cu) (Sr,Ln)2(Ln,Ce)2Cu20~ (Ln = Sm, Eu, Gd, Dy and Ho) 75 -in RBa2Cu3_xGaxOT_y (R=Er, Y, Dy, Eu and Nd) 119 -in (Tlt_xBix)Sr2 (Ndo.vsCeo.202 Cu20~ 206 -in YSr2Cuz.7Mo.3Oy ( M = M o and W) 451 Synthesis -of Pb2Sr2 (Ln2_yCey) Cu3Ozo+d 169 Synthesis -of BizSr6_xCu3Olo (CO3) 2 199 -of Bi(Pb)-Sr-Ca-Cu-O 37 -of Bi-Pb-Sr-Ca-Cu-O 66 -of ErBazCusOT_6 301 -of HgBazCaCu206+6 266 -ofHgBa2CuOy 271

.I ha@ticsubject indev

502 -ofSr-Ca-Cu-O 164 -ofTl2BazCa2Cu30,o 110 - o f Tl2HgBa4Cu2Olo+~. 274 -ofTIBa2Ca2Cu309 1 t0 - o f (Y.Ho) ~Ba2Cu30, 339 - o f Yo.6Cao.4BazCu~Hgl _ ~M ~O~+,. 239 -ofYBa2Cu3OT_a 101 - o f YBa2Cu3_xSn~OT_a 279 - o f YSQCuzTMo 30~ ( M = Mo and W) 451

Thermoelectric effects I Thermogravimetry 435 Thin film - o f YBa2Cu30~_,~ 101 Thin films 110,216,323 -ofBa~_ ,K,giO3 459 Tunneling density of states 173 Type 11 superconduclors 81, 155 Upper critical field He2

SI, 459

Thermal history effects

Van Hove singularities

233

317

Weaklinks

43,¢~1. II()

XPS 306 X-ray diffraction 339, 381

151,206, 206.2 ; i