Speckle wave interactions in application to holography and nonlinear optics:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton
CRC Press
1995
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XI, 279 S. Ill., graph. Darst. |
ISBN: | 0849344794 |
Internformat
MARC
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100 | 1 | |a Zel'dovič, Boris Ja. |e Verfasser |4 aut | |
245 | 1 | 0 | |a Speckle wave interactions in application to holography and nonlinear optics |c Boris Ya. Zel'dovich ; Alexander V. Mamaev ; Vladimir V. Shkunov |
246 | 1 | 3 | |a Speckle-wave interactions in application to holography and nonlinear optics |
264 | 1 | |a Boca Raton |b CRC Press |c 1995 | |
300 | |a XI, 279 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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adam_text | SPECKLE-WAVE INTERACTIONS IN APPLICATION TO HOLOGRAPHY AND NONLINEAR
OPTICS BORIS YA. ZEL DOVICH ALEXANDER V. MAMAEV VLADIMIR V. SHKUNOV CRC
PRESS BOCA RATON ANN ARBOR LONDON TOKYO CONTENTS 1 SPECKLE IN
HOLOGRAPHY: INTRODUCTION TO THE PROBLEM 1 1.1 INTERFERENCE AND SPATIAL
STRUCTURE 1 1.1.1 COHERENT OPTICS AND INTERFERENCE 1 1.1.2 SPECKLE
FIELDS 3 1.1.3 INEVITABILITY OF SPECKLE FIELDS 5 1.2 PROPERTIES OF
SPECKLE FIELDS 7 1.2.1 STATISTICAL PROPERTIES 7 1.2.2 PROPAGATION
EQUATION 8 1.2.3 LONGITUDINAL AND TRANSVERSE SIZE OF SPECKLE INHO-
MOGENEITIES 8 1.3 TYPES OF HOLOGRAMS OF SPECKLE FIELDS 10 1.3.1
PRINCIPLES OF HOLOGRAPHY 10 1.3.2 REFINEMENTS OF THE MODEL 11 1.3.3 THIN
LAYER, THICK LAYER, AND THREE-DIMENSIONAL HOLOGRAMS 12 1.3.4
RECONSTRUCTION OF HOLOGRAMS WITH COMPLICATED SPATIAL STRUCTURE 16 1.4
MAIN PARAMETERS OF HOLOGRAMS 17 1.4.1 DIFFRACTION EFFICIENCY 17 1.4.2
SELECTIVE PROPERTIES 18 1.5 DIFFRACTION OF LIGHT BY A SINUSOIDAL GRATING
22 1.5.1 THIN LAYER HOLOGRAM 22 1.5.2 THEORY OF TWO COUPLED WAVES 23 1.6
NOISE CHARACTERISTICS OF HOLOGRAMS 26 1.6.1 SPECKLE NOISE 27 1.6.2
INTRAMODULATION NOISE OF A HOLOGRAM WITH A PLANE REFERENCE WAVE 28 1.6.3
CROSSMODULATION NOISE 32 1.6.4 NOISE OF THREE-DIMENSIONAL HOLOGRAMS 34
SPECKLE-WAVE INTERACTIONS 2 PROBLEM OF INFORMATION CAPACITY OF
HOLOGRAPHIC MEM- ORY 37 2.1 LIGHT BEAM DEGREES OF FREEDOM 37 2.2
TWO-DIMENSIONAL RECORDING 38 2.3 THREE-DIMENSIONAL RECORDING 40 2.3.1
LIMITING DENSITY OF HOLOGRAPHIC STORAGE IN A BULK 41 2.3.2 VARIANTS OF
CODING AND READING OUT OF SEPARATE HOLOGRAPHIC GRATINGS 43 2.3.3
SUPERIMPOSING OF RECORDINGS AT REFERENCE WAVE TILTING 44 2.3.4
SUPERIMPOSING OF RECORDS VIA WAVELENGTH SHIFTS . 47 2.3.5 MEDIUM
PARAMETERS THAT RESTRICT DENSITY OF RECORD- ING 47 2.4 LIMITING THE
INFORMATION RETRIEVAL RATE 52 3 FIRST BORN APPROXIMATION THEORY OF
HOLOGRAM READ OUT 55 3.1 DERIVATION OF SCALAR HELMHOLTZ EQUATION FOR
NONUNIFORM MEDIA 55 3.2 AMPLITUDE OF THE RECONSTRUCTED OBJECT WAVE:
STRENGTH OF THE HOLOGRAM 57 3.3 AMPLITUDE OF THE CONJUGATE WAVE:
CONDITION OF THE VOL- UME REGIME 60 3.4 SPECTRAL-ANGULAR SELECTIVITY 62
3.4.1 SHAPE OF THE SELECTIVITY CURVE 62 3.4.2 CALCULATION OF THE BRAGG
DETUNING PARAMETER ... 64 3.4.3 COMPARISON OF SELECTIVE PROPERTIES FOR
DIFFERENT CASES 65 3.4.4 EXPERIMENTAL ILLUSTRATION 67 3.5 PHOTORESPONSE
SATURATION AND GRATING STRENGTH 69 4 HOLOGRAMS OF SPECKLE WAVES 73 4.1
DIFFRACTION EFFICIENCY OF HOLOGRAMS OF SPECKLE WAVES ... 73 4.2
DIFFRACTION EFFICIENCY AND NOISE AT PHOTORESPONSE SATU- RATION FOR THIN
AND THICK LAYER HOLOGRAMS 74 4.3 SELECTIVITY OF HOLOGRAMS OF SPECKLE
FIELDS 78 4.3.1 ANGULAR SPECKLE SELECTIVITY: EXPERIMENT 78 4.3.2 THEORY
OF ANGULAR SPECKLE SELECTIVITY 80 4.4 SPECTRAL-ANGULAR DISTORTIONS 83
4.4.1 REFERENCE WAVE FREQUENCY SHIFT 83 4.4.2 TURNS OF THE RECONSTRUCTED
IMAGE 86 4.5 HOLOGRAMS OF THE SPECKLE REFERENCE WAVE 87 4.5.1 FORMATION
OF ENCODED REFERENCE WAVES 88 4.5.2 RECORDING AND RECONSTRUCTION 90
4.5.3 SPATIAL STRUCTURE SELECTION 91 4.5.4 SELECTIVE PROPERTIES FOR
SPECKLE REFERENCE WAVES . 91 4.5.5 NOISE OF A HOLOGRAPHIC CORRECTOR 93
READING OUT OF HOLOGRAMS AT HIGH GRATING STRENGTH 97 5.1 THIN AND THICK
LAYER HOLOGRAMS OF ENHANCED EFFICIENCY . 97 5.1.1 LINEAR PHOTORESPONSE
RECORDING 98 5.1.2 RECORDING AT CONDITIONS OF PHOTORESPONSE SATU- RATION
101 5.2 SPECKLON 105 5.2.1 PHASE MATCHING CONDITION FOR RADIATION OF A
SPECKLE WAVE 106 5.2.2 SPATIAL RESONANCE OF FIELD AND MEDIUM 107 5.2.3
EXTINCTION AND SPECKLON CONTAMINATION 109 5.2.4 SPECKLON LIFE LENGTH
ILL 5.3 CALCULATION OF THE EXTINCTION COEFFICIENT FOR SPECKLON . . 113
5.3.1 SCATTERING IN A TURBID MEDIUM 113 5.3.2 SCATTERING BY
LIGHT-INDUCED INHOMOGENEITIES . . . 114 5.3.3 SPECKLON EXTINCTION 116
5.3.4 BACK INFLUENCE OF EXTINCTION NOISE ON SPECKLON . . 117 5.4
RECONSTRUCTION OF FIELDS BY THREE-DIMENSIONAL HOLOGRAMS AND EFFECT OF
SELECTIVITY CURVE SHIFT 118 5.4.1 PLANE REFERENCE WAVE 119 5.4.2 SPECKLE
REFERENCE WAVES 121 5.4.3 HOLOGRAMS OF LOW SELECTIVITY 122 5.4.4 ROLE OF
PHOTORESPONSE SATURATION 122 5.5 INTRAMODULATION NOISE OF 3-D HOLOGRAMS
123 5.5.1 LINEAR PHOTORESPONSE 124 5.5.2 RECORDING AT SATURATION 126 5.6
REFERENCELESS HOLOGRAMS 128 5.6.1 FIRST BORN APPROXIMATION FOR THIN
LAYER REFER- ENCELESS HOLOGRAMS 128 5.6.2 REFERENCELESS VOLUME HOLOGRAMS
129 5.7 SUPERIMPOSING EXPOSURES AT PARTIAL CORRELATION BETWEEN OBJECT
FIELDS 131 5.7.1 RENNINGER EFFECT 131 5.7.2 SPECKLE ANALOGY OF RENNINGER
EFFECT 132 5.7.3 PARTICULAR CONDITIONS OF SPECKLE WAVE CORRELATION 133
5.8 HYMN OF 3-D HOLOGRAM PRAISE 136 SELF-ACTION OF SPECKLE BEAMS IN
NONLINEAR MEDIA 139 6.1 BRIEF REVIEW OF NONLINEARITIES FOR DYNAMIC
HOLOGRAPHY . 139 6.1.1 LIGHT-INDUCED KERR EFFECT 139 6.1.2 ACCUMULATING
PHOTORESPONSE 140 6.1.3 PHOTOREFRACTIVE CRYSTALS 142 6.1.4 STIMULATED
SCATTERING 145 SPECKLE- WAVE INTERACTIONS 6.2 SELF-PHASE-MODULATION OF A
SPECKLE BEAM 147 6.2.1 PLANE WAVE MODEL 147 6.2.2 SELF-ACTION OF A
SPECKLE WAVE 148 6.3 SUPPRESSION OF SELF-FOCUSING BY SPECKLE 149 6.3.1
BESPALOV-TALANOV INSTABILITY 149 6.3.2 CRITICAL POWER OF SELF-FOCUSING
151 6.3.3 CONDITION OF INSTABILITY SUPPRESSION 152 6.3.4 SPECKLE BEAM IN
A KERR MEDIUM 153 6.3.5 MEDIUM WITH ACCUMULATING RESPONSE 154 6.3.6
EXPERIMENT ON SPECKLON PROPAGATION IN A NONLIN- EAR MEDIUM 154 6.4
SELF-BENDING OF A SPECKLE BEAM 157 6.4.1 DIFFUSION PHOTOREFRACTIVE
NONLINEARITY 158 6.4.2 PHENOMENON OF BEAM BENDING IN A PHOTOREFRAC- TIVE
CRYSTAL 159 6.4.3 RANDOM PHASE APPROXIMATION (RPA) FOR DIFFU- SION
STIMULATED SCATTERING 160 6.4.4 DERIVATION OF THE INTERACTION EQUATION
161 6.4.5 ANGULAR SPECKLE SOLITON 162 6.4.6 GENERAL SOLUTION FOR ANGULAR
SPECTRUM 163 6.4.7 DOUBLE-GAUSSIAN SPECKLE BEAM 164 6.4.8 SELF-BENDING
OF A DOUBLE-GAUSSIAN BEAM 167 6.4.9 PHASE CONJUGATE COUNTERPROPAGATING
BEAMS . . . 168 7 TWO WAVE MIXING 169 7.1 PLANE WAVE MODEL OF TWO-WAVE
MIXING 169 7.1.1 MEDIUM WITH LOCAL RESPONSE 170 7.1.2 ENERGY TRANSFER
FOR ACCUMULATING RESPONSE .... 171 7.1.3 STEADY-STATE ENERGY TRANSFER
173 7.1.4 PHOTOREFRACTIVE STIMULATED SCATTERING 175 7.1.5
PHOTOREFRACTIVE RESPONSE TIME 177 7.1.6 TRANSIENT REGIME OF STIMULATED
SCATTERING .... 178 7.2 SELF-PHASE-CONJUGATION VIA BACKSCATTERING 180
7.2.1 STIMULATED BRILLOUIN BACKSCATTERING 180 7.2.2 DIFFUSION
BACKSCATTERING IN PHOTOREFRACTIVES .... 182 7.3 TRANSIENT ENERGY
TRANSFER OF SPECKLE BEAMS IN ACCUMU- LATING MEDIA 185 7.4 STABILIZATION
OF DYNAMIC RECORDING OF VOLUME HOLOGRAMS 187 7.4.1 DYNAMIC FANNING
PROBLEM 188 7.4.2 MODEL OF NOISE GROWTH IN ACCUMULATING MEDIA . 189
7.4.3 STABILITY OF A SPECKLE WAVE 191 7.4.4 CRITERIA OF STABILITY 191
7.4.5 PARAMETRIC INSTABILITY OF INTERFERENCE PATTERN RECORD- ING 192
CONTENTS 7.4.6 SUPPRESSION OF PARAMETRIC INSTABILITY VIA SPECKLE
STRUCTURE 194 7.4.7 ROLE OF MODULATION TRANSFER FUNCTION (MTF) ... 195
7.4.8 ROLE OF PROPAGATION ANGLES 196 7.4.9 POSSIBILITIES OF FANNING
SUPPRESSION 198 7.5 VERIFICATION OF THE SPECKLON THEORY IN THE TWO-WAVE
MIX- ING EXPERIMENT 201 7.5.1 EXPERIMENT 201 7.5.2 ANISOTROPY OF MTF
FOR TRANSIENT PHOTOVOLTAIC RE- SPONSE 203 7.5.3 CORRECTION TO PHASE
VELOCITIES OF SPECKLE WAVES . 206 7.6 TWO-WAVE COUPLING VIA DIFFUSION
NONLINEARITY 207 7.6.1 EXPERIMENT: SPECKLE DAMPING OF TWO-WAVE GAIN 207
7.6.2 STANDARD PHOTOREFRACTIVE MODEL APPROACH 209 7.6.3 PHYSICS OF
SPECKLE DAMPING IN TWO-WAVE COUPLING210 8 SPECKLE EFFECTS IN MULTIWAVE
MIXING 213 8.1 INSTABILITY OF PHASE CONJUGATED SPECKLE WAVES IN KERR-
LIKE MEDIA 214 8.1.1 YARIV-PEPPER INSTABILITY 214 8.1.2 NONLINEAR
COUNTERPROPAGATION OF SPECKLE WAVES . 216 8.1.3 GENERAL SOLUTION 218 8.2
DOUBLE-PHASE-CONJUGATION 221 8.2.1 COUPLING OF MUTUALLY INCOHERENT WAVES
IN PHO- TOREFRACTIVE CRYSTALS 221 8.2.2 THRESHOLD CONDITION IN A PLANE
WAVE MODEL ... 222 8.2.3 ANGULAR SELECTION OF OSCILLATING WAVES 223
8.2.4 SPECKLE SELECTION OF CONJUGATE WAVES 225 8.2.5 GEOMETRY CONDITIONS
OF PHASE CONJUGATION .... 227 8.2.6 SPECKLE DAMPING 229 8.2.7 THRESHOLDS
FOR TRANSMISSION GRATING CASE 232 8.2.8 DOUBLE CONJUGATION VIA
REFLECTION GRATINGS .... 233 8.2.9 DISCRIMINATION FOR BACKSCATTERING
GEOMETRY .... 234 8.3 SELF-BITING SCHEME OF PHASE CONJUGATION 237 8.3.1
PRINCIPLES OF THE SCHEME 237 8.3.2 THRESHOLD CONDITION FOR PLANE WAVE
PUMP . . . . 238 8.3.3 CALCULATION OF MODES VIA THE ABED TECHNIQUE . . .
239 8.3.4 THE PROBLEM OF PHASE CONJUGATION 245 8.3.5 THRESHOLD AND
FIDELITY FOR SPECKLE PUMP 246 8.4 BUILD-UP OF SELF-CONJUGATING
OSCILLATION IN NONLINEAR CAV- ITIES 250 8.4.1 SELF-ORGANIZING NONLINEAR
CAVITIES 250 8.4.2 THE CAVITY IS DOOMED TO HAVE SPECKLE MODE ... 252
8.4.3 SCENARIO OF OSCILLATION BUILD-UP 253 8.4.4 ESTIMATION OF
THRESHOLDS 256 SPECKLE-WAVE INTERACTIONS 8.4.5 TEMPORAL SCALES OF
EVOLUTION 257 8.4.6 EXPERIMENTAL VERIFICATION 125 259 8.4.7 SYSTEM OF
EQUATIONS FOR SEMILINEAR MIRROR 261 BIBLIOGRAPHY 265 INDEX 275
|
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author | Zel'dovič, Boris Ja Mamaev, Alexander V. Škunov, Vladimir V. |
author_facet | Zel'dovič, Boris Ja Mamaev, Alexander V. Škunov, Vladimir V. |
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dewey-search | 621.3675 |
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discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik |
format | Book |
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id | DE-604.BV010150969 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:47:23Z |
institution | BVB |
isbn | 0849344794 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-006742608 |
oclc_num | 831417416 |
open_access_boolean | |
owner | DE-703 DE-384 DE-91G DE-BY-TUM |
owner_facet | DE-703 DE-384 DE-91G DE-BY-TUM |
physical | XI, 279 S. Ill., graph. Darst. |
publishDate | 1995 |
publishDateSearch | 1995 |
publishDateSort | 1995 |
publisher | CRC Press |
record_format | marc |
spelling | Zel'dovič, Boris Ja. Verfasser aut Speckle wave interactions in application to holography and nonlinear optics Boris Ya. Zel'dovich ; Alexander V. Mamaev ; Vladimir V. Shkunov Speckle-wave interactions in application to holography and nonlinear optics Boca Raton CRC Press 1995 XI, 279 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Nichtlineare Optik (DE-588)4042096-6 gnd rswk-swf Speckle (DE-588)4182120-8 gnd rswk-swf Holografie (DE-588)4025643-1 gnd rswk-swf Speckle (DE-588)4182120-8 s Holografie (DE-588)4025643-1 s DE-604 Nichtlineare Optik (DE-588)4042096-6 s Mamaev, Alexander V. Verfasser aut Škunov, Vladimir V. Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006742608&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Zel'dovič, Boris Ja Mamaev, Alexander V. Škunov, Vladimir V. Speckle wave interactions in application to holography and nonlinear optics Nichtlineare Optik (DE-588)4042096-6 gnd Speckle (DE-588)4182120-8 gnd Holografie (DE-588)4025643-1 gnd |
subject_GND | (DE-588)4042096-6 (DE-588)4182120-8 (DE-588)4025643-1 |
title | Speckle wave interactions in application to holography and nonlinear optics |
title_alt | Speckle-wave interactions in application to holography and nonlinear optics |
title_auth | Speckle wave interactions in application to holography and nonlinear optics |
title_exact_search | Speckle wave interactions in application to holography and nonlinear optics |
title_full | Speckle wave interactions in application to holography and nonlinear optics Boris Ya. Zel'dovich ; Alexander V. Mamaev ; Vladimir V. Shkunov |
title_fullStr | Speckle wave interactions in application to holography and nonlinear optics Boris Ya. Zel'dovich ; Alexander V. Mamaev ; Vladimir V. Shkunov |
title_full_unstemmed | Speckle wave interactions in application to holography and nonlinear optics Boris Ya. Zel'dovich ; Alexander V. Mamaev ; Vladimir V. Shkunov |
title_short | Speckle wave interactions in application to holography and nonlinear optics |
title_sort | speckle wave interactions in application to holography and nonlinear optics |
topic | Nichtlineare Optik (DE-588)4042096-6 gnd Speckle (DE-588)4182120-8 gnd Holografie (DE-588)4025643-1 gnd |
topic_facet | Nichtlineare Optik Speckle Holografie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006742608&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT zeldovicborisja specklewaveinteractionsinapplicationtoholographyandnonlinearoptics AT mamaevalexanderv specklewaveinteractionsinapplicationtoholographyandnonlinearoptics AT skunovvladimirv specklewaveinteractionsinapplicationtoholographyandnonlinearoptics |