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Dagotto E., Alvarez G., Cooper S.L. — Nanoscale phase separation and colossal magnetoresistance
Dagotto E., Alvarez G., Cooper S.L. — Nanoscale phase separation and colossal magnetoresistance

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Название: Nanoscale phase separation and colossal magnetoresistance

Авторы: Dagotto E., Alvarez G., Cooper S.L.

Язык: en

Рубрика: Физика/Физика твёрдого тела/Приложения/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 2002

Количество страниц: 452

Добавлена в каталог: 15.08.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
A-type antiferromagnetism      11
A-type orbital arrangement      41
A-type order in two orbitals model      173
Anderson localization      306
Anisotropic MR      403
Anomalous softening of magnons      224
Antiferromagnetism in one-orbital model      95
Band insulator picture      199
Berry phase      162
Berry phase and bistripes      209
Bicritical behavior      335
Bistripes in LCMO      28
Bistripes: theoretical considerations      208
Bond percolation      304
Boundary conditions in simulations      147
Breathing mode      73
Butterfly patterns      359
C-type orbital arrangement      41
Calculating resistivities is difficult      324
CE clusters      360
CE clusters above $T_C$      363
CE nanoclusters in magnetic fields      367
CE state as a band insulator      199
CE state in simulations      195
Central peak in neutron scattering      222
CE—type orbital arrangement      41
CE—type state      12
Charge density waves      111
Charge ordered nanoclusters      359
Charge ordering in LCMO      26
Charge ordering in MC simulations      194
Charge stacking      28
Charge stacking in simulations      196
Clean limit T*      328
Clebsch Gordan series      54
Closed shells      148
Cluster coexistence      312
Cluster glass      248 276
Clustered snapshots      329
CMR in simulations      333
CMR: two types      412
CO to FM transition      342
Colossal effects in cuprates      415
Colossal MR effect      13
Competition of phases      311
complexity      5
Compressibility      100
Computational techniques      5
Conclusions      405
Conductance      322
Conductances in quantum problems      323
Cooperative effects      69
Correlated polarons      360
correlation length      89
Coulomb and JT models, similarities of      170
Coulombic terms      71
Coupling $J_{AF}$      111
Coupling constants, estimation of      83
Cr doping      242
Critical dimensions      316
Critical exponents (experiments)      289
Critical temperature in 3D      93
Crystal field splitting      56
Dark field images      231
Density functional theory      83
Density matrix renormalization      105
Determinantal Monte Carlo      135
Diffuse or Huang scattering      359
Diffuse scattering      360
Diffusive central peak      223
Diluted magnetic semiconductors and large MR      377
Diluted magnetic semiconductors and T*      418
domain walls      330
Double exchange      16
Double exchange at large hole density      288
Double perovskite      39 379
Drude weight      262
Dynamical observables      141
Early days of manganites      9
Effective hopping $t\cos\frac{\theta}{2}$      120
Effective hopping $t_{eff}$      17
Effective t-J model      180
Elastic neutron scattering      217
Electron diffraction and nanoclusters      368
Electron microscopy      229
Electron phonon interaction      73
Electronic phase separation      98
Electroresistance      247
Equivalent operators      66
Eu-based compounds      375
Eu-based compounds and T*      389
Exact diagonalization      105
Exchange splitting      394
Experimental evidence of T*      370
Ferromagnetism in one-orbital model      88
First order transitions      311
First-order percolation transitions      323
Flux phase      114
Frustration      272
Frustration in spin systems      273
General open questions      413
Giant noise      245
Glassy behavior      335
Glassy behavior in manganites      276
GMR read sensor      400
GMR: introduction      393
Goodenough’s CE-state      18
Griffiths temperature      334
Half metals      38
Heat capacity measurements      250
Heavy fermions      419
Heisenberg terms      72
Heusler alloys      39
High magnetic fields      20
Hopping amplitudes      79
Hubbard U      76
Hund’s rule      15
Hysteresis regions in PCMO      32
Importance sampling      127
Imry and Ma      315
Incommensurability in the one-orbital model      103
Inelastic light scattering      382
Inelastic neutron scattering      217
Inhomogeneities at $x\approx1/8$      287
Inhomogeneities in $La_{1-x}Sr_{x}MnO_3$      285
Inhomogeneities in $Рr_{1-x}Ca_{x}МпО_3$      290
Inhomogeneities in bilayers      293
Inhomogeneities in cuprates: STM      415
Inhomogeneities in electron-doped manganites      248
Inhomogeneities in LCMO      213
Inhomogeneities in single layers      298
Ioffe — Regel criterion      43
Ising model      130
Island phases      114
Isotope substitution      30 344
Jahn Teller effect      56
Jonker and Van Santen      9
JT modes $Q_2$ and $Q_3$      65
Kanamori parameters      53
Kondo effect      122
Ladder systems      106
Landauer formalism      321
Large MR in ruthenates      379
Lattice polaron      108
Long range Coulomb and stripes      325
Long ranged Coulomb repulsion      109
Long relaxation times      276
Magnetic recording      399
Magnetic tunnel junction      402
magnetization      26
Martensitive transitions      249
Maxwell construction      102
Mean-field approximation for manganites      157
Mean-field equations, solution of      165
Mean-field for Ising model      158
Micrometer size clusters      230
Midgap states      255
Model $J_1-J_2-J_4$      328
Model t—J for manganites      106
Monte Carlo code for the Ising model      153
Monte Carlo formalism for manganite models      137
Monte Carlo simulations      125
Moore’s Law      6
MR ratio      13
Multicritical points      331
Multiorbital models      51
Muon spin relaxation      247
Nanoclusters above $T_C$      359
Nanoclusters in magnetic fields      367
Nanoclusters with STM      235
Nanoclusters: size and structure      365
Nanoscale phase separation      4
National High Magnetic Field Lab      21
Neutron diffraction      220
Neutron scattering in LCMO      222
Neutron scattering: introduction      214
New phases in undoped limit      175
NMR in LCMO      239
NMR wipeout effect      240
NMR: introduction      237
Noise (1/f)      246
Noninteracting two orbitals model      81
Nonvolatile memories      401
Numerical integration      126
Octahedral cage      9
One hole properties      357
One orbital model      75
Open experimental issues      408
Open theoretical issues      411
Optical conductivity: cuprates      260
Optical conductivity: experiments      255
Optical conductivity: introduction      266
Optical conductivity: nickelates      260
Optical conductivity: theory      261
Orbital order in two orbitals model      172
Orbital order: qualitative explanation      174
Orbital polaron      108
Orbitons      180
Organic superconductors      419
Other compounds with FM-AF competition      375
Other compounds with large MR      375
Pair-Density-Functional technique      285
Pairing d-wave      119
PDF in LCMO      235
Peierls instability      201
Percolation and first-order transitions      323
Percolation in Eu-based compounds      389
Percolation: backbone      304
Percolation: critical probability      305
Percolation: infinite cluster      303
Percolation: introduction      301
Perovskite structure      9
Phase diagram in the undoped limit      171
Phase diagram of bilayer manganites      42
Phase diagram of LCMO      23
Phase diagram of LSMO      35
Phase diagram of manganites in general      41
Phase diagram of NSMO      40
Phase diagram of one—orbital model      87
Phase diagram of PCMO      30
Phase diagram of single layer manganites      47
Phase diagram of two orbitals model      169
Phase diagrams with and without disorder      340
Phase separation at x=0.5 LCMO      277
Phase separation in cuprates      415
Phase separation in one-orbital model      96
Phase separation in other materials      415
Phase separation in two orbitals model      177
Photo-induced induced transition      287
Photoemission: introduction      347
Polarons      108
Poor metal      43
Pressure effects      28
Projector Monte Carlo      136
Pseudogap in simulations      313
Pseudogap: definition      347
Pseudogap: experiments      352
Pseudogap: optical conductivity      371
Pseudogap: theory      354
Quantum critical behavior      336
Quantum critical like behavior      326
Quantum localized spins      105
Quantum Monte Carlo      134
Quantum percolation      307
Quasiparticles      352
Quenched disorder      311
Quenched disorder: control      338
Quenched disorder: influence on $T_C$      341
Racah parameters      54
Random field Heisenberg model      314
Random field Ising model      314
Random resistor equations      309
Relaxor ferroelectrics      417
Resistivity in mixed-phase states      331
Resistor networks      303 318
Resonant x-ray scattering: experiments      184
Resonant x-ray scattering: theory      188
Reverse Monte Carlo      368
Rigorous theorems      151
Ruthenates      378
Sampling techniques      129
Scanning tunneling microscope      232
Semicovalent bond      18
Semicovalent bonds      194
sign problem      130
Site percolation      304
Skyrmion phase      115
Small angle neutron scattering      219
Spallation Neutron Source      216
Spectral weight function      351
Spin diffusion      224
Spin fermion model for cuprates      118
Spin gaps      106
Spin glasses: introduction      271
Spin polarons      108
Spin structure factor      89
Spin waves in manganites      221
Spin-canted state      18
Spin-valve effect      395
Spinodal decomposition      102
Spintronics      394
Spontaneous symmetry breaking      91
Static observables      139
strain      325
Stripes in cuprates      199
Stripes in spin fermion model      119
Stripes in two orbitals model      197
Strongly correlated electrons      1
Sudden approximation      351
Sum rule in $\sigma(\omega)$      263
Superexchange interaction      16
Telegraph noise      246
Temperature scale T*      334
The case of $Sm_{1-x}Sr_{x}MnO_3$      369
Theories alternative to phase separation      406
Time dependent effects      279
Tolerance factor      19
Toy model of competing phases      327
transmission electron microscopy      231
Two fluid model      247
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