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Dittrich T. (ed.), Hanggi P. (ed.), Ingold G.-L. (ed,) — Quantum transport and dissipation
Dittrich T. (ed.), Hanggi P. (ed.), Ingold G.-L. (ed,) — Quantum transport and dissipation



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Название: Quantum transport and dissipation

Авторы: Dittrich T. (ed.), Hanggi P. (ed.), Ingold G.-L. (ed,)

Аннотация:

The increasing emphasis and importance of mesoscopic systems for tomorrow's high-tech electronics industry as well as a growing research interest in the subject has given rise to the need for a modern introductory text at the graduate level. This book aims to provide the necessary theory and tools to carry out research into the various aspects of the subject. It starts with a chapter on the theory of quantum transport giving a survey of the basic theory used in transport phenomena including scattering, linear response theory, weak localization, conductance fluctuations and the Landauer-Büttiker formalism. Various aspects of chaos in quantum systems as well as dissipative quantum systems are discussed. Other topics of importance such as single electron tunneling, driven bistable systems, quantized transport and electron liquids are also covered in detail. Graduate students as well as newcomers to this exciting and expanding field will find this work useful to adopt the necessary theory and overview required to go deeper into the original literature and to carry out research.


Язык: en

Рубрика: Физика/Термодинамика, статистическая физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1999

Количество страниц: 372

Добавлена в каталог: 17.08.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Fazio, R.      3.8 3.10
Feit, M.D.      5.20
Feng, S.      1.14
Fermi energy      130 133 135 337 338
Fermi wavelength      129 130 337
Fermi wavevector      135
Fermion      114 136
Fermion ansatz      125
Fermion composite      123 126
Fermion operator      137
Fermion symmetry      125
Feynman path      40
Feynman, R.P.      3.48 4.17 4.18 4.19
Fictitious lead      339—340
Filipe, A.      3.32
Fisher, D.S.      2.98
Fisher, M.P.A.      2.101 4.1
Fishman, S.      6.75
Fleck Jr., J.A.      5.20
Floquet exponent      252 254 255 263 269 271
Floquet form      269
Floquet matrix      270
Floquet mode      252 253 255 258 263 278
Floquet mode generalized      259
Floquet state      252 254 331 332 349
Floquet theorem      252 331 347
Floquet theory      252—261
Floquet theory generalized      258—259
Floquet theory multi-mode      272
Floquet, G.      5.13
Flores, J.      6.39
Fluctuating force      216
Fluctuation-dissipation theorem      213 224—225 344
Flux conservation      338
Fokker — Planck equation      344 346
Ford, G.W.      4.4
Ford, J.      6.73
Form factor, spectral      312
Forster, D.      1.40
Four-probe measurement      72
Fowler, A.B.      2.16
Foxon, C.T.      2.73
Fractal      290 292 293 324 333 334 341 346 348 349
Free damped particle      215 228—229
Free energy, imaginary part of      244
Freidkin, E.      4.30
French, J.B.      6.39
Frenkel, A.      6.79
Friedberg, R.      2.18
Friedel oscillations      9 11 12
Frobenius — Perron operator      326
Frost, J.E.F.      1.18 2.74
Fukuyama, H.      1.61 2.52 2.82
Function cluster      310 313 314 329
Function deflection      333
Function spectral two-point correlation      310 313 314 329
Gardiner, C.W.      6.99
Garg, A.      4.1
Gate charge      153
Gate voltage      151
Gaussian white noise      15 88 89
Gavrila, M.      5.6
Geerligs, L.J.      3.34
Geisel, T.      6.33 6.65
Giannoni, M.—J.      6.10 6.18 6.35 6.41 6.44 6.49 6.78
Ginibre ensemble      347
Girvin, S.      2.4
Girvin, S.M.      2.61 2.64
Gisin, N.      6.101
Gisselfaelt, M.      3.31
Glazman, L.I.      1.70 2.78 2.80 3.13 3.19 3.30 3.31 3.33
Goda, M.      5.46
GOE      314—316
Goetsch, P.      5.34
Golubev, D.S.      3.50
Gomez Llorente, J.M.      5.33 5.36 5.40 6.55
Goni, A.R.      2.93
Gorkov, L.P.      1.8 1.35
Gornik, E.      2.19
Gossard, A.C.      2.19 2.47 6.82 6.88
Grabert, H.      3.2 3.51 4.13 4.14 4.20 4.25 4.27
Graham, R.      5.34 6.66 6.93 6.94 6.97 6.103 6.107 6.108
Grambov, P.      2.94
Gredeskul, S.A.      1.29
Green function      15—20 89 90 93 99 106 306
Green function advanced, retarded      16
Grempel, D.R.      6.75
Grifoni, M.      5.48 5.49
Grigolini, P.      6.56 6.57
Grinstein, G.      1.10
Grobe, R.      6.105
Gross, D.J.      2.14
Grossmann, F.      5.9 5.19 5.35 5.47
Group theory      322 325
GSE      314—316
Guarneri, I.      5.7
GUE      314—316
Guinea, F.      3.20
Gurvitz, S.A.      4.29
Gutzwiller trace formula      308 322 325 326
Gutzwiller, M.C.      6.7 6.34 6.35
Haake, F.      5.6 6.8 6.105
Haenggi, P.      4.21 4.24 5.9 5.19 5.26 5.35 5.47 5.48 5.49 6.53 6.106 6.107
Haeusser, O.      6.81
Hajdu, J.      2.3
Haken, H.      6.8
Hakim, V.      4.16
Haldane, F.D.M.      2.65 2.88
Hall conductance      101
Hall conductivity      103 105
Hall plateau      105
Hall resistance      101
Hall resistivity      103
Hall voltage      105
Halperin, B.I.      2.42 2.53 2.59 2.71
Hamann, D.R.      1.27
Hamilton — Jacobi equation      299
Hammerich, A.D.      5.43
Hanggi, P.      4.30
Hanke, W.      1.39
Hannay, J.H.      6.17
Hansen, J.P.      1.67
Hanson, J.D.      6.95
Harada, Y.      3.35
Harmonic oscillator damped      214 225—228
Harmonic oscillator driven      261—263
Hashitsume, N.      2.22
Hasko, D.G.      1.18 2.74
Haug, R.J.      2.44
Haviland, D.B.      3.35 3.41
Heat bath      213 216 217 232 234 341
Heidenreich, R.      2.89
Heisenberg time      308 328
Heitmann, D.      2.19 2.94
Hekking, F.W.J.      3.5 3.19 3.21 3.30
Helleman, R.H.G.      6.1 6.14
Heller, E.J.      6.31 6.32 6.50
Hellmann — Feynman theorem      254
Hergenrother, J.M.      3.22 3.25
Hermitecity      342
Heuser, M.      2.9
Hibbs, A.R.      4.18
Higher-order tunneling processes      189 192
Hillery, M.      6.20
Hillmer, H.      2.81
Hirschfelder, J.O.      5.27
Ho, T.—S.      5.18
Ho, Y.K.      5.47
Holle, A.      6.36
Holthaus, M.      5.30 5.32 5.46
Honda, T.      2.84
Hone, D.W.      5.30
Hontscha, W.      4.24
Hopkins, P.F.      6.82 6.88
Horizon      172
Howland, J.      5.22
Huckestein, B.      2.28 2.29 2.30 2.31 2.46
Huebner, R.      6.107
Husimi distribution      297 341
Husimi, K.      5.24
Hwang, J.C.M.      2.48
Iengo, R.      2.72
Ikeda, K.      5.46 6.96
Imaginary part of free energy      244
Impurity      88 337
Imry, Y.      1.10 1.49 1.53 1.55 1.62 1.64 1.71 6.69
Ince, E.L.      5.13
Incoherent Cooper-pair tunneling      188
Influence functional      234 237 239
Ingold, G.—L.      4.14 4.20 4.25
Integrable systems      291 298 300 309 312 313 316
Interaction electron-electron      3 41 110 135 352
Interaction electron-phonon      134
Invariance discrete translational      323—325 332
Invariance time-reversal      312 314 324 326 330 341 345 347
Invariant manifold      290 303
Invariant measure      303
Invariant subspace      322
Iooss, G.      6.1 6.14
Iordanskii, S.V.      2.54
Irreversibility      289 345 347
Ismail, K.      2.81
Itzykson, C.      1.41 2.14
Izrailev, F.M.      6.56 G.64 6.73 6.74 6.77
Jain, J.K.      2.69
Jaklevic, R.C.      3.12
Jalabert, R.A.      6.83 6.90
Jauho, A.      5.46
Jaynes — Cummings model      281
Jaynes, E.T.      5.41
Joachain, C.J.      2.7
Joannopoulos, J.D.      2.46
Jones, G.A.C.      1.18 2.74
Jonson, M.      2.80 3.31
Jorna, S.      6.13
Josephson current      194
Josephson tunneling      192
Joyez, P.      3.24 3.32
Jung, P.      5.9 5.19
Jung, R.      4.14
Kac, M.      4.4
Kaminski, J.Z.      5.6
Kane, C.L.      1.77 2.101
Kasner, M.      2.56 2.66
Kastner, M.A.      1.59
Kauppinen, J.P.      3.17
Kawabata, A.      2.79
Kayanuma, Y.      5.38
Keating, J.P.      6.46
Keller, K.      2.94
Kenkre, V.M.      5.45
Kerner, F.H.      5.24
Ketzmerick, R.      6.65
Khmelnitskii, D.E.      1.8 1.11 1.54
Khmel’nitskii, D.E.      1.70 2.78
Kicked rotor quantum-mechanical      324 327 330—333 348 349
Kicked rotor, classical      293 327 330—331 348 349
Kirkpatrick, T.R.      1.3 1.43
Kitaev, A.Yu.      6.46
Kittel, C.      1.25
Kleinert, H.      4.18
Koch, S.      2.44
Koenig, J.      3.10
Kohler, S.      6.107
Kohmoto, M.      2.49
Kohn, W.      1.65
Kolmogorov — Arnol’d — Moser (KAM) theorem      292
Kolovsky, A.R.      6.66
Kopaev, Y.V.      1.39
Korsch, H.J.      5.6 5.47
Kosloff, D.J.      5.21
Kosloff, R.      5.21 5.43
Kotliar, G.      1.6
Kouwenhoven.L.P.      1.17 2.73
Kramer, B.      2.20 2.27 2.28 2.32 2.33 2.36 2.38 2.46 2.70 2.75 2.76 2.81 2.83 2.95 2.99 3.10 5.9
Kramers, H.A.      4.26
Kravtsov, V.E.      1.37
Krummhansl, J.A.      2.11
Kubo — Greenwood formula      20 21
Kubo, R.      2.22 2.96 4.11
Kuchar, F.      2.46 2.81
Kurdak, C.      2.45
Kuzmin, L.S.      3.41
Lafarge, P.      3.24 3.32
Laibowitz, R.B.      1.50 1.58 1.79
Landau band      93 97 99
Landau energies      95
Landau energy      89
Landau gauge      80 84
Landau level      82 89
Landau model      80
Landau state      87 95 97 98
Landau, L.D.      2.5
Landauer      104
Landauer dipole      11—13
Landauer formula      7 62
Landauer — Buettiker formalism      60—74
Landauer — Buettiker formula      339—340
Landauer, R.      1.9 1.15 1.22 1.49 1.76 2.39 6.85
Landwehr, G.      2.33
Langer, J.S.      4.22
Langevin equation      214 343 346
Laplace demon      287
Larkin, A.I.      1.8 3.42
Lassnig, R.      2.19
Latka, M.      6.57
Laughlin, R.B.      2.55 2.57 2.62 2.67
Leath, P.L.      2.11
Leboeuf, P.      6.67
Lechner, K.      2.72
Lee, H.—W.      6.21
Lee, K.Y.      2.81
Lee, P.A.      1.3 1.6 1.12 1.14 1.19 1.61 1.77 2.53 2.59 2.82 2.98 3.1 6.71
Leggett, A.J.      3.14 3.49 4.1 4.7
Lerner, I.V.      1.37
Lesovik, G.B.      1.70 2.78
Level attraction      322 329
Level clustering      322 329
Level repulsion      55 310 313 321 329
Level repulsion cubic      347
Level repulsion linear      315—316
Level repulsion quadratic      315—316
Level repulsion quartic      315—316
Levine, R.D.      5.23
Levinson, I.B.      1.73
Lewiner, C.      2.37
Licciardello, D.C.      1.7
Lichtenberg, A.J.      6.2
Licini, J.C.      1.59
Lieb, E.H.      2.87
Lieberman, M.A.      6.2
Lifshits, I.M.      1.29
Lifshitz, E.M.      2.5
Likharev, K.K.      3.1 3.39
Limit classical      296 305 333 335 337 345
Limit high-temperature      343
Limit long-time      328 333 343 345—350
Lin, W.A.      6.54
Linear response      20—24 103 104 128 140 141 221—222 339
Linewidth      208 336 340 346 348 349
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