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Ehrenreich H., Spaepen F. — Solid State Physics. Volume 49
Ehrenreich H., Spaepen F. — Solid State Physics. Volume 49



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Название: Solid State Physics. Volume 49

Авторы: Ehrenreich H., Spaepen F.

Аннотация:

Solid State Physics, Volume 49 continues the Series' tradition of excellence by focusing on the optical and electronic properties and applications of semiconductors. Three of the chapters deal with stress applications as well as the basic underlying science of semicondutors. All of the topics in this volume are at the cutting-edge of research in the semiconductor field and will be of great interest to the scientific community.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1995

Количество страниц: 509

Добавлена в каталог: 18.08.2015

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Brennan, R.M.      165
Brenner, K.H.      380
Brill, R.: Determination of Electron Distribution in Crystals by Means of X-Rays      20 1
Brillouin zone, Bragg scattering at boundary of      151
Brillouin zone, full photonic band-gap      153 188 202
Brito-Cruz, C.H.      429
Broems, P.      46 72(150)
Brommer, K.D.      154 160(31 32) 161 162 163 164 190 191 192(86) 193 194
Brown, A.R.      11 12(31) 68 72 88 109 110 117 118 119 120 122 123 124(312) 128 130(223) 131(223 302) 134 135 137 138
Brown, C.S.      29 30(99) 60(99)
Brown, E.: Aspects of Group Theory in Electron Dynamics      22 313
Brown, E.R.      169
Brown, Frederick C.: Ultraviolet Spectroscopy of Solids with the Use of Synchrotron Radiation      29 1
Bruder, C.      448
Brum, J.A.      see "Bastard G."
Brunetti, R.      316 347 361(180)
Brunthaler, G.      215 223
Bube, Richard H.: Imperfection Ionization Energies in CdS-Type Materials by Photoelectronic Techniques      11 223
Buchwald, E.      126
Buettiker, M.      295 296 299 300 301 302 310(84) 448
Buettner, H.      45 46(144 145)
Bullet, D.W.: The Renaissance and Quantitative Development of the Tight-Binding Method      35 129
Bullock, D.L.      168
Bulovic, V.      143
Bundy, F.P., and Strong, H.M.: Behavior of Metals at High Temperatures and Pressures      13 81
Buot, F.A.      386 387
Buried gate devices      10 11
Burn, P.L.      11 12(31) 17 18 29 30 31(102) 51 52 53 54(104) 56 68 72 82 83(170 245) 104 105(219) 106 117 118 119 120 122 123 125 128 130(223) 131(223 302) 136(178) 137 138 139
Burnett, G.M.      33
Burns, S.E.      140
Burroughes, J.H.      8 9 10 11 12(31) 72 85 87(18 19) 88(18) 92(18 19) 93 94 95 97 98 99 100(18) 101(18 19) 102 103(18 19) 117(31) 118 119 122 128 130(223) 131(223)
Burrows, P.E.      143
Burshtein, Z.      116
Busch, G., and Guentherodt, H.-J.: Electronic Properties of Liquid Metals and Alloys      29 235
Busch, G.A., and Kern, R.: Semiconducting Properties of Gray Tin      11 1
Cacialli, F.      24 73 123 124(78) 144(226)
Cahay, M.      310
Cai, J.      334
Cai, W.      310 333 335 362 446 447
Calcagnile, L.      219 220(41) 272
Caldeira, A.O.      304 362 364(298)
Callagher, D.      233
Callaway, J.      151 152(2) 154(2) 157(2) 158(2) 170(2) 171(2) 179(2) 184(2) 185(2) 186(2)
Callaway, J., and March, N.H.: Density Functional Methods: Theory and Applications      38 136
Callaway, Joseph: Electron Bands in Solids      7 100
Calvert, P.D.      29 30(99) 31 60(99)
Cammack, D.A.      216
Campbell, D.K.      37 39 41 42(130 137) 43 44(142) 45 46(130) 49(142) 104(123)
Campbell, I.H.      139
Canham, L.T.      115
Cantwell, G.      214
Cao, Y.      26 31 142
Capacitance versus voltage in Schottky-barrier diodes      8—9
Capacitance, differential      375—378
Capacitive coupling, quantum dot effects and      307—308
Capture, electron-hole, blue LED      245
Capture, electron-hole, PPV LEDs      128
Capture, electron-hole, two-carrier currents      77—80
Carcenac, F.      285
Cardon, F.      140
Cardona, Manuel      see "Supplement 11 - Optical Modulation Spectroscopy of Solids"
Cargill, G.S., III: Structure of Metallic Alloy Glasses      30 227
Carlsson, A.E.: Beyond Pair Potentials in Elemental Transition and Semiconductors      43 1
Carrier, G.F.      385
Carroll, C.W.      380
Carruthers, P.      320 382(197)
Cavenett, B.C.      136 225 270
Cavity quantum electrodynamics      166 202
CCR      see "Crystal coordinate representation"
Cerdeira, H.A.      286 435(14)
Cervini, R.      132
Chadi, D.J.      236
Chan, C.T.      153 154 164 187(30) 188 189 192 193(21) 195
Chance, R.R.      46 60 140
Chandrasekhar, V.      295 298
Chandross, E.A.      31
Chandross, M.      49
Chang, A.M.      301
Chang, L.L.      304
Chang, S.-K.      216
Chaplik, A.V.      306
Charge carriers, Boltzmann transport equation versus quantum transport of      289—297
Charge carriers, field effect and      85—86 87—88
Charge carriers, injected under nonequilibrium conditions      70
Charge carriers, photogeneration in conjugated polymers      146—148
Charge carriers, temperature-dependence of polyacetylene      59
Charge carriers, transport of      see also "Quantum transport modeling"
Charge carriers, transport of, single-carrier currents      73—77
Charge carriers, transport of, two-carrier currents      77—80
Charge injection in ITO/PPV/CA LEDs      124—125
Charge injection into n-type ZnSe      241
Charge injection of holes, polyacetylene devices      92
Charge injection onto polymer chains with solitons      41
Charge injection, field emission      71
Charge injection, mechanisms for, in presence of barriers      64
Charge injection, metal-semiconductor and metal-insulator contacts      64—68
Charge injection, MIS diodes      90
Charge injection, nonideal contacts      72—73
Charge injection, thermionic emission      69—70
Charge stability on polymer chains      7
Charge storage, MISFETs      41
Charge storage, polyacetylene devices PA      87
Charge storage, polyacetylene devices PA, soliton or mid-gap states      91—92
Charge-transfer complexes, donor and acceptor structures      4
Charge-transfer complexes, doped conducting polymers      25
Charge-transfer complexes, electrons from metallic calcium to PPV      72
Charge-transfer complexes, low-temperature ground states      3—4
Charvolin, Jean, and Tardieu, Annette: Lyotropic Liquid Crystals: Structures and Molecular Motions      209 see
Chaussy, J.      295
Chemla, D.S.      429 430
Chen, Chia-Chun      see "Lieber Charles M."
Chen, J.      22
Chen, M.      303
Chen, T.A.      23
Cheng, H.      208 241 244(10 78) 251(78) 256 259 260
Chester, G.V.      288
Chevy, A.      429
Chiang, C.K.      4 5(6) 6
Chien, W.      376
Choi, H.-Y.      45
Choi, K.K.      296
Chou, M.Y.      see "de Heer Walt
Chou, W.C.      216
Chu, D.Y.      168
Chu, X.      215
Chung, T.-C.      22
Churchill, L.      247
Cingolani, R.      219 220(41) 272
Clarisse, C.      111
Clarke, T.C.      8
Cleaver, J.R.A.      308
Clemenson, P.I.      14 107(34)
Clendenen, R.L.      see "Drickamer H.G."
CMR      see "Crystal momentum representation"
CN-PPV      see "Dihexyloxy-poly(p-phenylene-vinylene) cyano-substituted derivative"
Cnossen, G.      81 140(243)
Coelle, M.      126
Cohen, Jerome B.: The Internal Structure of Guinier-Preston Zones in Alloys      39 131
Cohen, M.H.      347
Cohen, M.H., and Reif, F.: Quadrupole Effects in Nuclear Magnetic Resonance Studies of Solids      5 322
Cohen, Marvin L.      see "de Heer Walt "Joannopoulos J.D."
Cohen, Marvin L., and Heine, Volker: The Fitting of Pseudopotentials to Experimental Data and Their Subsequent Application      24 38
Coherent microwave transient spectroscopy      162—163
Colaneri, N.      131 142
Colaneri, N.F.      56 108 136(178)
Coleridge, P.T.      306 307
Collins, D.A.      215
Collins, R.P.      115
Collins, T.C.      47
Collisional-broadening, equilibrium form of Green's function      413
Collisional-broadening, homogenous, high-field systems      417
Collisions, Green's function and field effects on      419
Color, controlling polymer EL emission      118—124 141
COMITS      see "Coherent microwave transient spectroscopy"
Commes da Costa, P.      39 42(131) 46(131)
Compton, W. Dale, and Rabin, Herbert: F-Aggregate Centers in Alkali Halide Crystals      16 121
Conductance of ballistic structures      300
Conductance of localized tunneling/scattering barriers      297—298
Conductance, Green — Kubo formula and ac      436—437
Conductance, phase interference and      294—297
Conductance, universal fluctuations of      419—420 435
Conducting conjugated polymers, description      2—7
Conducting conjugated polymers, doping, description      25—27
Conducting conjugated polymers, doping, films of intrinsically      14
Conductivity      see also "Photoconductivity" "superconductivity"
Conductivity, dark      58—61
Conductivity, dissipation from scattering processes and electric field      329—330
Conductivity, molecular semiconductor      3—4
Conductivity, PBG materials, theoretical calculations for      192
Conductivity, polyaniline      26
Conductivity, PPV and PT-based FET      108—110
Configuration coordinates of conjugated molecule energies      32—34
confinement      see "Electronic confinement" "Optical
Conjugated molecules      see also "Conjugated polymers"
Conjugated molecules, $\Delta$ orbitals and ground states of      38
Conjugated molecules, aromatic/heteroaromatic unit coupling      37—38
Conjugated molecules, Coulomb interactions      37
Conjugated molecules, electronic structure      32—34
Conjugated molecules, Frenkel excitons and      47
Conjugated molecules, SSH Hamiltonian      36—37
Conjugated polymers      see also "Conjugated molecules"
Conjugated polymers, conducting description      2—7
Conjugated polymers, conducting doping      25—27
Conjugated polymers, conducting films of intrinsically      14
Conjugated polymers, device processes      63—84
Conjugated polymers, device processes, carrier transport      73—80
Conjugated polymers, device processes, charge injection      64—73
Conjugated polymers, device processes, exciton decay      80—84
Conjugated polymers, electroluminescence, used for      121—123t
Conjugated polymers, field effect in      84—89
Conjugated polymers, materials, doped conducting polymers      25—27
Conjugated polymers, materials, molecular semiconductors and      27—29
Conjugated polymers, materials, physical properties      29—31
Conjugated polymers, materials, synthesis of semiconducting      12—15
Conjugated polymers, optical and electronic properties      32—63
Conjugated polymers, photoconductive and photovoltaic devices      144—148
Conjugated polymers, semiconducting, chemical structures of common      12—14
Conjugated polymers, semiconducting, description      2—7
Conjugated polymers, semiconducting, organic      7—12
Conjugated polymers, semiconducting, synthesis of      12—25
Conjugation-breaking defects      15
Conner, M.      380
Conrads, N.      144
contacts      see also "Boundaries" "Electrodes" "Open
Contacts, ballistic transport and      298—301
Contacts, boundaries and      301—303 378
Contacts, metal-semiconductor and metal-insulator      64—68
Contacts, nonideal      72—73
Contacts, numerical discretization and      389—391
Contacts, open systems and      297—298
Contacts, p-ZnSe low-resistance      241—244
Contellec, M.L.      111
Conticello, V.P.      24
Continuum models, FBC      43—45
Continuum models, SSH, modeling of polyacetylene in excited states      37
Continuum models, SSH, solitons on polyacetelene chains      39—41
Conwell, E.M.      39 42(131) 46 48
Conwell, Esther M.      see "Supplement 9 - High Field Transport in Semiconductors"
Cook, J.W.      247
Cook, J.W., Jr.      242 249
Cooper, Bernard R.: Magnetic Properties of Rare Earth Metals      21 393
Corbett, J.W.      see "Supplement 7 - Electron Radiation Damage in Semiconductors and Metals"
Corciovei, A., Costache, G., and Vamanu, D.: Ferromagnetic Thin Films      27 237
Corneliassen, H.      216
Cornil, J.      46 49 72(150) 113
Coronado, C.A.      214
Costache, G.      see "Corciovei A."
Cotal, H.L.      220
Coulomb blockage regime, definition      307
Coulomb blockage regime, density matrix simulation of      361
Coulomb interactions, bipolarons and optical transitions      45
Coulomb interactions, blue-green diode laser gain spectroscopy      279—281
Coulomb interactions, conjugated molecule properties      37
Coulomb interactions, dissipation in Wigner models and      402
Coulomb interactions, exciton description      49
Coulomb interactions, III-V versus II-VI QW lasers      268—269
Coulomb interactions, quantum well quasi-2D electronic confinement      217—218
Coulomb interactions, UV absorption spectrum of PPV      49
Coulomb interactions, ZnSe-based QW lasers      267—268
Courtis, A.      24
Craig, R.A.      321
Cramail, H.      16 30
Crawford, O.A.      140
Cruz, H.      309
Crystal coordinate representation, $k \cdot p$ theory vector analog      170
Crystal coordinate representation, defect modes, photonic band-gap      181—186
Crystal coordinate representation, Green's functions      184—185
Crystal momentum representation, $k \cdot p$ theory vector analog      170
Crystal momentum representation, Bloch functions      173
Crystal momentum representation, defect modes, photonic band-gap      180
Crystal, B.      82 83(245)
Crystall, B.      53 83(170)
Crystallinity of conjugated polymers      29—31
Crystals, electroluminescent      116
Crystals, Franz — Keldysh shift in bulk      290
Crystals, molecular conductor, fragility of      4
Crystals, PGB versus electronic      154—155
Crystals, photonic      see "Photonic band-gap materials"
Cui, H.L.      335 408 418
Currat, R., and Janssen, T.: Excitations in Incommensurate Crystal Phases      41 202
Current flow in density matrices      361—370
Current versus bias voltage for Schottky-barrier diodes      8 9
Current versus bias voltage, blue-green LED      246—247
Czycholl, G.      440
Dai, N.      216
Dalby, R.      216
Dalichaouch, R.      162 169
Dalven, Richard: Electronic Structure of PbS, PbSe, and PbTe      28 179
Dandrea, R.G.      39 42(131) 46(131)
Danielewicz, P.      431
Danielson, P.L.      46
Dannetun, P.      46 72 73 128(225)
Dark spot defects      260—263
Das Sarma, S.      309 310 314 335 362 440 444
Das, T.P., and Hahn, E.L.      see "Supplement 1 - Nuclear Quadrupole Resonance Spectroscopy"
Datta, S.      154 187(30) 192 310 407 438 439 440 446
Davies, J.H.      306 308 419 444 446
Davies, M.      307
Davison, S.G., and Levine, J.D.: Surface States      25 1
DBRTD      see "Double-barrier resonant-tunneling diodes"
DDQ      see "2 3-Dichloro-5 6-dicyano-1 4-benzoquinone"
de Fontaine, D.: Configurational Thermodynamics of Solid Solutions      34 74
de Gennes, P.G.: Macromolecules and Liquid Crystals: Reflections on Certain Lines of Research      1 see
de Heer, Walt A., Knight, W.D., Chou, M.Y., and Cohen, Marvin L.: Electronic Shell Structure and Metal Clusters      40 94
de Jeu, W.H.: The Dielectric Permittivity of Liquid Crystals      109 see
de Jong, M.J.M.      301
de Launay, Jules: The Theory of Specific Heats and Lattice Vibrations      2 220
de Leeuw, D.M.      88 109 110
De Martini, F.      168
de Wit, Roland: The Continuum Theory of Stationary Dislocations      10 249
Dederichs, P.H.: Dynamical Diffraction Theory by Optical Potential Methods      27 136
Deen, M.J.      107
Defect modes, 3D PBG materials      160—162
Defect modes, losses in photonic gap      167
Defect modes, photonic band-gap formalism      181—186
Defect modes, single-mode cavities and      166—167
defects      see also "Impurities"
Defects at metal-polymer interface      72
Defects, bleaching Ramon spectrum for polyacety-line MIS diodes      98
Defects, blue-green light emitters      259—264 281—282
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