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Evans M.W., Kielich S. — Modern Nonlinear Optics
Evans M.W., Kielich S. — Modern Nonlinear Optics



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Íàçâàíèå: Modern Nonlinear Optics

Àâòîðû: Evans M.W., Kielich S.

Àííîòàöèÿ:

The volume contains 14 review articles from the Poznan School, Poland, and associated laboratories, presenting state-of-the-art developments in nonlinear optics research.


ßçûê: en

Ðóáðèêà: Ôèçèêà/

Ñòàòóñ ïðåäìåòíîãî óêàçàòåëÿ: Ãîòîâ óêàçàòåëü ñ íîìåðàìè ñòðàíèö

ed2k: ed2k stats

Ãîä èçäàíèÿ: 1993

Êîëè÷åñòâî ñòðàíèö: 632

Äîáàâëåíà â êàòàëîã: 24.11.2013

Îïåðàöèè: Ïîëîæèòü íà ïîëêó | Ñêîïèðîâàòü ññûëêó äëÿ ôîðóìà | Ñêîïèðîâàòü ID
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Ïðåäìåòíûé óêàçàòåëü
Multiharmonic light scattering, second-harmonic scattering      91—104
Multiharmonic light scattering, third-harmonic scattering      104—107
Multipolar susceptibilities, magnetically ordered crystals, elliptically polarized light rotation      340—341 349—356
Multipolar susceptibilities, magnetically ordered crystals, linear and nonlinear electric and magnetic forms      314—319
Multipolar susceptibilities, magnetically ordered crystals, linear electric and magnetic dipole susceptibilities      341—342
Multipolar susceptibilities, magnetically ordered crystals, permutational symmetry      319—321
Multipolar susceptibilities, magnetically ordered crystals, tensor forms      356—370
Multipolar susceptibilities, magnetically ordered crystals, time-reversal symmetry      319—322
Murao, T.      309(34) 371
Murphy, D.V.      90(51) 125 128(30) 156
Muta, K.      262(95) 303
Nafie, L.A.      90(19) 124
Narducci, L.M.      378(11) 392(11) 401 480—481(43) 495 535(144) 539
Natural light, hyper-Rayleigh and -Raman scattering      145—150
Nayak, N.      498(45) 537
Nayeem, A.      161(21) 213
Nayyar, V.P.      232(28) 246
Neddersen, J.P.      128(37) 156
Nees, J.      266(108) 304
Neeves, A.E.      241(51) 246
Nelson, K.A.      229(19) 244(60) 245 247
Nematic phase structure, fast molecular orientation of liquid crystals, basic structure      178—179
Nematic phase structure, fast molecular orientation of liquid crystals, degenerate four-wave mixing (DFWM)      206
Nematic phase structure, fast molecular orientation of liquid crystals, induced transient grating (ITG) investigations      201—202
Nematic phase structure, optical qualities of samples      182—183
Nematic phase structure, sample preparation      182
Neumann's principle, magnetically ordered crystals, magneto-optics selection rule      322—323
Neumann's principle, magnetically ordered crystals, Stokes parameters      332—334
Neumann, R.      542(38) 590
Newell, V.J.      200(84 86) 211(86) 215
Nguyen, H.T.      202(95—96) 209(96) 211(96) 215
Nguyen, P.X.      14—16 18 28 219(3—4) 221(6) 223(4 14) 225(11) 227—229(6 14—16 18) 231—232(24—25 28) 235(35) 237(16) 242(24) 245—246 313(117) 373
Nguyen, Van Tran      312(107) 373
Ni, Y.      542(13) 589
Nie, S.      90(60) 126 155(70) 157
Nieman, G.C.      90(47) 125
Nieto, M.M.      444(73) 458
Nikolova, L.      242(57) 246
Noise minimum states (NMS), photon statistics      415—418
Nonclassical light states, quantum resonance fluorescence      469—472
Nondegenerate three-wave interaction, $X^{(2)}$ grating      276—278
Nonlinear absorption (NLA), laser light propagation      219—220
Nonlinear absorption (NLA), two-wave propagation      232—233
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, Dc field-induced electric rectification      38—39
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, dispersion and absorption      23—25
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, dynamics      36—38
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, electric polarization in liquids      18—19
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, electro-optical phenomena in liquids      35—46
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, Gaussian pulsed-induced third-order electric polarization      43—46
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, GIOR optical rectification dynamics      39—43
Nonlinear dielectric effect (NDE), Smoluchowski rotational diffusion, NDE dynamics      36—38
Nonlinear electro-optical effects, Smoluchowski rotational diffusion      19—35
Nonlinear imaging technique, susceptibility tensor measurements      227
Nonlinear laser light propagation, background      218—219
Nonlinear laser light propagation, one-wave propagation      219—231
Nonlinear laser light propagation, one-wave propagation, applications      231
Nonlinear laser light propagation, one-wave propagation, experimental parameters      219—220
Nonlinear laser light propagation, one-wave propagation, linear absorption optical activity      230—231
Nonlinear laser light propagation, one-wave propagation, polarization eigenstates      223
Nonlinear laser light propagation, one-wave propagation, single polarized beam measurements of susceptibility tensor      223—230
Nonlinear laser light propagation, one-wave propagation, third-order nonlinear susceptibility tensor      219—223
Nonlinear laser light propagation, polarization eigenstates      242—243
Nonlinear laser light propagation, third-order nonlinear susceptibility components      244—245
Nonlinear laser light propagation, two-wave propagation      231—237
Nonlinear laser light propagation, two-wave propagation, intense wave propagation      236—237
Nonlinear laser light propagation, two-wave propagation, polarization eigenstate equations      232—233
Nonlinear laser light propagation, two-wave propagation, polarization wavefront conjugation      242
Nonlinear laser light propagation, two-wave propagation, signal wave propagation with pump wave      233—236
Nonlinear laser light propagation, two-wave propagation, three incident wave propagation, four-wave mixing      237—242
Nonlinear laser light propagation, two-wave propagation, three incident wave propagation, propagation equation/susceptibility tens      238—240
Nonlinear laser light propagation, two-wave propagation, three incident wave propagation, susceptibility tensor components      240—242
Nonlinear magneto-optical effects      311—314
Nonlinear optics (NLO)      see also "Specific techniques"
Nonlinear optics (NLO), fast molecular orientation of liquid crystals vs. depolarized Rayleigh scattering (DRS)      167—169
Nonlinear optics (NLO), fast molecular orientation of liquid crystals, degenerate four-wave mixing      175—177
Nonlinear optics (NLO), fast molecular orientation of liquid crystals, induced transient grating (ITG)      173—175
Nonlinear optics (NLO), fast molecular orientation of liquid crystals, liquid crystals      161
Nonlinear optics (NLO), fast molecular orientation of liquid crystals, optical Kerr effect (OKE)      171—173
Nonlinear optics (NLO), fast molecular orientation of liquid crystals, relaxation times      169—170
Nonlinear optics (NLO), linear absorption optical activity      230—231
Nonlinear optics (NLO), photon statistics      418—458
Nonlinear optics (NLO), photon statistics, Gaussian solutions      418—438
Nonlinear optics (NLO), photon statistics, Gaussian solutions, nth subharmonic generation      433—438
Nonlinear optics (NLO), photon statistics, Gaussian solutions, optical phase conjugation      425—428
Nonlinear optics (NLO), photon statistics, Gaussian solutions, stimulated Raman and hyper-Raman scattering      428—433
Nonlinear optics (NLO), photon statistics, Gaussian solutions, three- and four-wave missing      418—425
Nonlinear optics (NLO), photon statistics, non-Gaussian solutions      438—456
Nonlinear optics (NLO), photon statistics, non-Gaussian solutions, anharmonic oscillator      438—451
Nonlinear optics (NLO), photon statistics, non-Gaussian solutions, symbolic computational method      451—456
Nonlinear polarizability, decay process      46—47
Nonlinear polarizability, Gaussian electric field pulses (GIOR)      41—42
Nonlinear polarizability, Smoluchowski rotational diffusion, DCIOR      28—29
Nonlinear polarizability, Smoluchowski rotational diffusion, self-induced variations      31—32
Nonlinear polarizability, Smoluchowski rotational diffusion, third-harmonic generation at dielectric frequencies      33—35
Nonlinear relaxation theory, background      2—5
Nonlinear relaxation theory, Debye — Smoluchowski molecular rotational diffusion model      8—12
Nonlinear relaxation theory, molecular polarizability dispersion and absorption      5—8
Nonlinear relaxation theory, Smoluchowski rotational approximation      18—47
Nonlinear relaxation theory, Smoluchowski rotational approximation, Dc field-induced electric rectification      38—39
Nonlinear relaxation theory, Smoluchowski rotational approximation, DC-SHG      26—28
Nonlinear relaxation theory, Smoluchowski rotational approximation, DCIOR effect      28—33 38—39
Nonlinear relaxation theory, Smoluchowski rotational approximation, decay process      46—47
Nonlinear relaxation theory, Smoluchowski rotational approximation, electric polarization in liquids      18—19
Nonlinear relaxation theory, Smoluchowski rotational approximation, electro-optical dispersion and absorption      19—35
Nonlinear relaxation theory, Smoluchowski rotational approximation, Gaussian pulse-induced third-order polarization      43—46
Nonlinear relaxation theory, Smoluchowski rotational approximation, GIOR optical dynamics      39—43
Nonlinear relaxation theory, Smoluchowski rotational approximation, nonlinear dielectric effect (NDE)      23—25 36—38
Nonlinear relaxation theory, Smoluchowski rotational approximation, third-harmonic generation at dielectric frequencies      33—35
Nonlinear relaxation theory, Smoluchowski rotational approximation, time dependence in electro-optical phenomena in liquids      35—46
Nonlinear relaxation theory, Smoluchowski rotational approximation, time dependence in electro-optical phenomena in liquids, third-order electric polarization in liquids      12—18
Normandin, R.      201(88) 215
Novikov, M.A.      3(25) 48 310(50) 372
Nozaki, R.      212(113) 216
Nth-harmonic generation, squeezed states of light      499—500
Nth-subharmonic generation, photon statistics      433—438
Nuclear deformations, nonlinear laser light propagation      228—229
Nunzi, J.M.      221(6) 228(6) 235(31) 237(31) 241(48 53) 245—246
O'Connell, R.F.      468(33) 494(33) 495 542(129) 592
O'Hare, J.M.      98(79) 126
Oddershede, J.      309(29) 371
Oesterberg, U.      38(28 34—35) 43(53 68) 250—254(11—12 28 34—35 38 43 68) 257—259(11—12 43 53) 262—263(11—12 38) 279(11—12) 288(38) 290—291(12 43) 296(12) 298—299(12) 301—302
Ogurtsov, I.Ya.      128(31) 156
Ohmori, Y.      250(9—10) 258(9—10) 301
Okada, M.      289(124) 304
Oliver, G.      542(104) 591
One-mode squeezed state, properties of      508—509
Onsager's symmetry principle for kinetic coefficients      322—323
Optical anisotropy, light scattering of macromolecule solutions, reorientation parameters      77—81
Optical Kerr effect (OKE), fast molecular orientation of liquid crystals, fast responses      194—199
Optical Kerr effect (OKE), fast molecular orientation of liquid crystals, first-order polarizability anisotropy $\tau$      166—167
Optical Kerr effect (OKE), fast molecular orientation of liquid crystals, principles of      171—173
Optical Kerr effect (OKE), fast molecular orientation of liquid crystals, signal vs. time variations      186—187
Optical Kerr effect (OKE), fast molecular orientation of liquid crystals, slow responses to picosecond pulses      183—194
Optical Kerr effect (OKE), nonlinear laser light propagation      231
Optical Kerr effect (OKE), nonlinear laser light propagation, two-wave propagation      237
Optical Kerr effect (OKE), photon statistics, anharmonic oscillator      451
Optical phase conjugation, photon statistics      425—428
Optical-rectification model, $X^{(2)}$ grating      264—267
Optically active molecules, elliptically polarized light      564
Optically inactive molecules, elliptically polarized light      564
Orientational diffusion equation, Smoluchowski rotational approximation      3—4
Orientational spectrum, hyper-Rayleigh and -Raman scattering      122—123
Orr, B.J.      5(73) 49
Orszag, A.      173(62) 214 238(44—45) 241(45 62) 244(45 62) 246—247
Orville-Thomas, W.I.      87
Osipov, M.A.      160(4) 212
Ostrovskii, V.I.      128(31) 156
Otnes, K.      161(19) 208(19) 213
Ouchi, Y.      212(116) 216
Ouellette, F.      250—251(31 42 51 66) 257(31) 261(84) 265(66) 285(42) 291(42) 301—303
Overlap integrals, $X^{(2)}$ grating      284—285
Ovsiannikov, V.D.      309(30) 371
Owyoung, A.      18(78) 21(78) 49 235(34) 246
Ozaki, K.      266(108) 304
Ozgo, Z.      4(54 57 59) 49 55—56(42) 69(42) 81(73) 87—88 90(21 49 54) 91(61—66 68) 94—95(21 74—76) 125—126 128(18—20 23) 141—142(54 56) 144(54) 150(56) 156—157
Paillette, M.      235(30) 237(30) 246
Pair correlation function, hyper-Rayleigh and -Raman scattering      120—123
Palik, E.D.      309(40) 371
Palma, G.M.      494(63 67) 496
Pao, Y.H.      90(12) 124 128(10) 156
Papffy-Muhoary, P.      163(37) 213
Parent, M.      261(83) 303
Parsons, I.W.      52(30) 86
Particle shape functions, light scattering of macromolecule solutions      58—59 70—71
Parzynski, R.      535(128) 539
Pascaud, E.      90(44) 125
Paterno, A.      4(65) 49
Paul, H.      498(53) 537 542(94 105 112 192) 591 593
Pavlov, L.I.      236(37) 246
Payne, D.N.      251(40 55) 255(40) 258(76) 259(55) 263(40) 265(40 107) 278—280(40) 302—304
Pecora, R.      4(47 50) 48 51(1) 52(36) 54(36) 56—57(1) 60(1 52) 62(1 52) 68(1) 75(52) 86—87 109(89) 126 161(23) 169(55) 208(104) 213—215
Peeters, F.      395(52) 403
Pegg — Barnett formalism, squeezed states of light      501
Pegg, D.T.      443(68—70) 445(75) 458 501(108—110) 538 565(219) 594
Percivall, I.      384(31) 402
Pereira, S.F.      500(82) 511(82) 538 542(27) 589
Perina, J.      260(128) 296—297(128) 305 396(53—54) 403 408(1) 410(1—3) 411(3) 412—413(6 12) 416(1) 418(23—25) 421—422(1 24—25) 424—425(4 32) 428—431(1 37—40) 437(55) 438(1) 446(1—2) 449(2) 450—452(105—106) 453(109) 455(109 111) 456(1) 456—459 462(10) 462(15) 494 498(22 46—47 54) 499(77) 500(85 103) 536—538 542(98 109 113 122 139—40 148 178 199) 591—594
Perinova, V.      396(53—54) 403 410—411(2—4) 424(4) 439(62 65 67) 440(65) 442(65) 445(74) 446(2 62 65) 447(82) 448(93) 449(2) 451—452(106) 453(109) 455(109) 456—459 462(15) 494 498(22 46—47 54) 500(85) 501(104) 535(168) 536—540 542(122 139 140) 543(59 69) 590 592
Perlmutter, S.H.      498(30) 536
Permutation relations, elliptically polarized light      570—577
Permutation symmetry, hyper-Rayleigh and -Raman scattering      130—133
Permutation symmetry, magnetically ordered crystals      319—321
Perpendicular scattering, hyper-Rayleigh and -Raman scattering, unsymmetric scattering      152—155
Perrin, F.      3(28) 9(28) 48 52(40) 87
Pershan, P.S.      141(57—58) 157 258(80) 261(85) 289(85) 294(85) 297(85) 303 311—312(94) 373 498(42) 537 544—545(211) 552(211) 594
Persico, F.      377(4) 401
Persoons, A.      90(38) 125
Perturbation theory, laser field and matter third-order interactions      161—163
Peterlin, A.      2(21) 48 60(51) 71(51) 87
Peters, C.W.      90(1) 124 498(41) 511(41) 521(41) 537
Peterson, S.H.      128(14) 156
Peticolas, W.L.      90(19) 124
Petite, G.      241(20) 242(58) 245 247
Petkanchin, I.      52(11) 86
Petrenko, A.D.      542(138) 592
Petrov, V.I.      90(50) 125 128(33) 155(72) 156—157
Pettiaux, N.P.      535(158) 540
Pfeffer, N.      235(31) 237(31) 246
Phase matching, self-squeezed light, nonlinear medium      529—530
Phenomenological theory, fast molecular orientation of liquid crystals, optical Kerr effect (OKE)      189—194
Phoenix, S.J.D.      551(213—214) 594
Phonon modes, quantum optics      381
Photocount oscillations, photon statistics      413—414
Photon antibunching, multiatom resonance fluorescence      481—488
Photon antibunching, quantum resonance fluorescence      461—463 470—472
Photon antibunching, single-atom resonance fluorescence      473—479
Photon antibunching, squeezing and      414—418
Photon statistics, antibunching and squeezing      414—418
Photon statistics, generalized superposition, coherent fields and quantum noise      406—414
Photon statistics, generalized superposition, coherent fields and quantum noise, definitions      406—411
Photon statistics, generalized superposition, coherent fields and quantum noise, photon-number distribution oscillation      413—414
Photon statistics, generalized superposition, coherent fields and quantum noise, principal squeezing      411—413
Photon statistics, nonclassical fields, background      405—406
Photon statistics, nonlinear optical processes      418—458
Photon statistics, nonlinear optical processes, Gaussian solutions      418—438
Photon statistics, nonlinear optical processes, Gaussian solutions, nth subharmonic generation      433—438
Photon statistics, nonlinear optical processes, Gaussian solutions, optical phase conjugation      425—428
Photon statistics, nonlinear optical processes, Gaussian solutions, stimulated Raman and hyper-Raman scattering      428—433
Photon statistics, nonlinear optical processes, Gaussian solutions, three- and four-wave mixing      418—425
Photon statistics, nonlinear optical processes, non-Gaussian solutions      438—456
Photon statistics, nonlinear optical processes, non-Gaussian solutions, anharmonic oscillator      438—451
Photon statistics, nonlinear optical processes, non-Gaussian solutions, symbolic computational method      451—456
Photon statistics, self-squeezing, elliptically polarized light      554—560
Photon statistics, squeezing states, elliptically polarized light      560—566
Piazza, R.      81(82) 88
Picosecond pulses, slow response in OKE experiments      183—194
Piekara, A.      14(76—77) 18(76 80—81 88—89 91—92) 21(77) 49—50 309(15—17) 311(19 92) 371 373
Pierov, A.A.      3(44) 48
Piksarv, P.      542(155) 592
Pilipetski, N.F.      237(42) 246
Pinnov, D.A.      88
Pisarev, R.V.      311(78 80) 343(78) 351(78) 372
Pitayevskii, L.P.      135(48) 157
Placzek, G.      91(71) 126 135(48) 157
Plane-wave approximation, third-order nonlinear susceptibility tensor      222—223
Pleibel, W.      251(30) 301
Pleiner, H.      210(108) 276
Plummer, H.      52(13) 86
Pockels' effect, magnetically ordered crystals, elliptization of linearly polarized light      349
Pockels' effect, magnetically ordered crystals, magneto-optics selection rule      323
Podobedov, V.B.      90(57) 126
Poetsch, W.      18(85) 50
Poggi, Y.      192(80) 215
Pohlmann, J.L.W.      164(39) 213
Poincare recurrence theorem, quantum optics      384—386
Poirer, M.      261(84) 303
Poirier, M.      250—251(66) 265(66) 302
Poisson distribution, photon statistics, quantum noise definitions      409
Poisson distribution, photon statistics, squeezed states of light      503—504
Poisson distribution, self-squeezing, elliptically polarized light      554—560
Polariton-like systems, quantum optics, model parameters      380—381
Polariton-like systems, quantum optics, Raman correlation spectroscopy      395—396
Polarizability tensors, second-harmonic scattering      91—104
Polarizability tensors, self-squeezed light, nonlinear medium      522—523
Polarizability tensors, third-harmonic scattering      105—107
Polarization eigenstates, nonlinear laser light propagation, equations      223
Polarization eigenstates, nonlinear laser light propagation, features of      242 244
Polarization eigenstates, nonlinear laser light propagation, two-wave propagation      232—233
Polarization grating, fast molecular orientation of liquid crystals      173—174
Polarization wavefront conjugation, four-wave mixing (FWM)      242
Poling technique, second-harmonic generation (SHG)      255—256
Polzik, E.S.      500(95) 538
Poole, S.B.      266—267(111) 304
Pople, J.A.      309(14) 371
Popma, T.J.A.      310(61) 372
Popova, T.Y.      234(29) 246
Porter, C.S.      310(57) 372
Portigal, D.I.      310(49) 372
Pouligny, B.      190(76) 194(76) 215
Poulingny, B.      160(14—15) 194(15) 197(15) 213
Poumellec, B.      254(69) 303
Poussigue, G.      90(44) 125
Poynting vector, permutational symmetry      319—321
Poyntz-Wright, L.J.      18—20(19 39—41 70 93) 250—251(16 18—20 39—41) 255(41 70) 262—263(16 19 39 41 93) 265—266(19 41) 278—280(41) 288(39) 301—303
Price, A.H.      18(82) 49 87
Principal squeezing, historical perspective      500
Principal squeezing, nth subharmonic generation      435—438
Principal squeezing, photon statistics      411—413
Probability density, light scattering of macromolecule solutions      62
Probe light, fast molecular orientation of liquid crystals      172—173
Probe pulses, fast molecular orientation of liquid crystals      194—196
Probe pulses, nonlinear laser light propagation      234—235
Prokhorov, A.M.      251(61) 283(61) 300(61) 302
Prost, J.      192(79) 215
Proutiere, A.      163(36) 213
Pump pulses, fast molecular orientation of liquid crystals      172 194—196
Pump pulses, nonlinear laser light propagation      233—236
Pump pulses, photon statistics, optical phase conjugation      425—428
Pump pulses, photon statistics, three- and four-wave mixing      418—425
Purcel, T.      262—263(97) 303
Puri, R.P.      535(135) 539
Puri, R.R.      494(68) 496 542(82) 543(67 82) 590—591
Q-switched and mode-locked YAG laser, degenerate four-wave mixing (DFWM)      202—211
Qu, Y.      535(165) 540
Quadrature operators, multiatom resonance fluorescence      482—488
Quadrature operators, squeezed states of light      505—508
Quadrature operators, squeezed states of light, anharmonic oscillators      511—514
Quadrature operators, squeezed states of light, one-mode squeezed state      508—509
Quadrature operators, squeezed states of light, two-mode squeezed state      509—511
Quang, T.      493(56) 494(65) 495 496
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