Handbook of holographic interferometry: optical and digital methods
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2005
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 463 - 511 |
Beschreibung: | XII, 542 S. Ill., graph. Darst. |
ISBN: | 3527405461 |
Internformat
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245 | 1 | 0 | |a Handbook of holographic interferometry |b optical and digital methods |c Thomas Kreis |
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Datensatz im Suchindex
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adam_text | THOMAS KREIS HANDBOOK OF HOLOGRAPHIC INTERFEROMETRY OPTICAL AND DIGITAL
METHODS WILEY- VCH WILEY-VCH VERLAG GMBH & CO. KGAA CONTENTS PREFACE XI
1 INTRODUCTION 1 1 .1 SCOPE OF THE BOOK 1 1.2 HISTORICAL DEVELOPMENTS 3
1.3 HOLOGRAPHIC INTERFEROMETRY AS A MEASUREMENT TOOL 6 2 OPTICAL
FOUNDATIONS OF HOLOGRAPHY 9 2.1 LIGHTWAVES 9 2.1.1 SOLUTIONS OF THE WAVE
EQUATION 9 2.1.2 INTENSITY 12 2.2 INTERFERENCE OF LIGHT 13 2.2.1
INTERFERENCE OF TWO WAVES WITH EQUAL FREQUENCY 13 2.2.2 INTERFERENCE OF
TWO WAVES WITH DIFFERENT FREQUENCIES 14 2.2.3 INTERFERENCE OF TWO WAVES
WITH DIFFERENT AMPLITUDES 15 2.3 COHERENCE 16 2.3.1 TEMPORAL COHERENCE
17 2.3.2 SPATIAL COHERENCE 19 2.4 SCALAR DIFFRACTION THEORY 21 2.4.1
FRESNEL-KIRCHHOFF DIFFRACTION FORMULA 21 2.4.2 FRESNEL APPROXIMATION 23
2.4.3 FRAUNHOFER APPROXIMATION 25 2.4.4 THIN LENS 26 2.4.5 PROPAGATION
OF LIGHT WAVES AS A LINEAR SYSTEM 29 2.5 SPECKLES 30 2.5.1 STATISTICS OF
SPECKLE INTENSITY AND PHASE 30 2.5.2 SPECKLE SIZE 34 2.6 HOLOGRAPHIC
RECORDING AND OPTICAL RECONSTRUCTION 36 2.6.1 HOLOGRAM RECORDING 36
2.6.2 OPTICAL RECONSTRUCTION OF A WAVE FIELD 40 2.6.3 HOLOGRAPHIC
IMAGING EQUATIONS 44 2.6.4 TYPES OF HOLOGRAMS 47 2.7 ELEMENTS OF THE
HOLOGRAPHIC SETUP 53 2.7.1 LASER 53 2.7.2 RECORDING MEDIA 58 VI CONTENTS
2.7.3 OPTICAL COMPONENTS 61 2.7.4 BEAM MODULATING COMPONENTS 62 2.8
CCD-AND CMOS-ARRAYS 65 2.8.1 CCD CONCEPT 66 2.8.2 CCD ARRAY PERFORMANCE
PARAMETERS 70 2.8.3 CMOS IMAGE SENSORS 73 2.8.4 SPATIAL SAMPLING WITH
CCD-ARRAYS 74 2.8.5 COLOR STILL CAMERAS 76 3 DIGITAL RECORDING AND
NUMERICAL RECONSTRUCTION OF WAVE FIELDS 81 3.1 DIGITAL RECORDING OF
HOLOGRAMS 81 3.1.1 CCD RECORDING AND SAMPLING 81 3.1.2 REDUCTION OF THE
IMAGING ANGLE 84 3.1.3 REFERENCE WAVES 89 3.2 NUMERICAL RECONSTRUCTION
BY THE FRESNEL TRANSFORM 93 3.2.1 WAVE FIELD RECONSTRUCTION BY THE
FINITE DISCRETE FRESNEL TRANSFORM 93 3.2.2 REAL AND VIRTUAL IMAGE 97
3.2.3 DIGITAL FOURIER TRANSFORM HOLOGRAPHY 100 3.2.4 THE D.C.-TERM OF
THE FRESNEL TRANSFORM 102 3.2.5 SUPPRESSION OF THE D.C.-TERM 105 3.2.6
SUPPRESSION OF THE TWIN IMAGE 107 3.2.7 VARIATION OF THE REFERENCE WAVE
108 3.2.8 ANAMORPHIC CORRECTION 114 3.3 NUMERICAL RECONSTRUCTION BY THE
CONVOLUTION APPROACH 115 3.3.1 THE DIFFRACTION INTEGRAL AS A CONVOLUTION
115 3.3.2 SIZE OF THE IMAGE FIELD 117 3.3.3 SHIFTING OF THE IMAGE FIELD
118 3.3.4 SCALING OF THE IMAGE FIELD 120 3.4 FURTHER NUMERICAL
RECONSTRUCTION METHODS 124 3.4.1 PHASE-SHIFTING DIGITAL HOLOGRAPHY 124
3.4.2 LOCAL AMPLITUDE AND PHASE RETRIEVAL 129 3.4.3 WAVELET APPROACH TO
NUMERICAL RECONSTRUCTION 132 3.4.4 COMPARISON OF RECONSTRUCTION METHODS
134 3.4.5 HOLOGRAM RECORDING USING CONSUMER CAMERAS 139 3.5 WAVE-OPTICS
ANALYSIS OF DIGITAL HOLOGRAPHY 140 3.5.1 FREQUENCY ANALYSIS OF DIGITAL
HOLOGRAPHY WITH RECONSTRUCTION BY FRESNEL TRANSFORM 141 3.5.2 FREQUENCY
ANALYSIS OF DIGITAL HOLOGRAPHY WITH RECONSTRUCTION BY CONVOLUTION 148
3.5.3 THE TRANSFER FUNCTION AS A FILTER 151 3.6 NON-INTERFEROMETRIC
APPLICATIONS OF DIGITAL HOLOGRAPHY 159 3.6.1 PARTICLE ANALYSIS BY
DIGITAL HOLOGRAPHY 160 3.6.2 MICROSCOPY BY DIGITAL HOLOGRAPHY 169 3.6.3
DATA ENCRYPTION WITH DIGITAL HOLOGRAPHY 180 CONTENTS VII 4 HOLOGRAPHIC
INTERFEROMETRY 185 4.1 GENERATION OF HOLOGRAPHIC INTERFERENCE PATTERNS
186 4.1.1 RECORDING AND RECONSTRUCTION OF A DOUBLE EXPOSURE HOLOGRAPHIC
INTERFEROGRAM 186 4.1.2 RECORDING AND RECONSTRUCTION OF A REAL-TIME
HOLOGRAPHIC INTER- FEROGRAM 188 4.1.3 TIME AVERAGE HOLOGRAPHY 190 4.1.4
INTERFERENCE PHASE VARIATION DUE TO DEFORMATION 191 4.1.5 INTERFERENCE
PHASE VARIATION DUE TO REFRACTIVE INDEX VARIATION . . . 194 4.1.6
COMPUTER SIMULATION OF HOLOGRAPHIC INTERFERENCE PATTERNS 196 4.2
VARIATIONS OF THE SENSITIVITY VECTORS 198 4.2.1 OPTIMIZATION OF THE
HOLOGRAPHIC ARRANGEMENT 198 4.2.2 TWO REFERENCE BEAM HOLOGRAPHIC
INTERFEROMETRY 201 4.3 FRINGE LOCALIZATION 203 4.3.1 FRINGE FORMATION
WITH DIFFUSELY SCATTERING SURFACES 203 4.3.2 FRINGE LOCALIZATION WITH
COLLIMATED ILLUMINATION 206 4.3.3 FRINGE LOCALIZATION WITH SPHERICAL
WAVE ILLUMINATION 211 4.3.4 FRINGE LOCALIZATION WITH PHASE OBJECTS 211
4.3.5 OBSERVER PROJECTION THEOREM 214 4.4 HOLOGRAPHIC INTERFEROMETRIC
MEASUREMENTS 215 4.4.1 QUALITATIVE EVALUATION OF HOLOGRAPHIC
INTERFEROGRAMS 215 4.4.2 HOLOGRAPHICALLY MEASURABLE PHYSICAL QUANTITIES
216 4.4.3 LOADING OF THE OBJECTS 218 5 QUANTITATIVE DETERMINATION OF THE
INTERFERENCE PHASE 221 5.1 ROLE OF INTERFERENCE PHASE 221 5.1.1 SIGN
AMBIGUITY 222 5.1.2 ABSOLUTE PHASE PROBLEM 224 5.2 DISTURBANCES OF
HOLOGRAPHIC INTERFEROGRAMS 225 5.2.1 VARYING BACKGROUND ILLUMINATION 226
5.2.2 ELECTRONIC NOISE 226 5.2.3 SPECKLE DECORRELATION 227 5.2.4
DIGITIZATION AND QUANTIZATION 227 5.2.5 ENVIRONMENTAL DISTORTIONS 228
5.3 FRINGE SKELETONIZING 229 5.3.1 PATTERN PREPROCESSING 229 5.3.2
FRINGE SKELETONIZING BY SEGMENTATION 231 5.3.3 SKELETONIZING BY FRINGE
TRACKING 233 5.3.4 OTHER FRINGE SKELETONIZING METHODS 233 5.3.5 FRINGE
NUMBERING AND INTEGRATION 234 5.4 TEMPORAL HETERODYNING 235 5.4.1
PRINCIPLE OF TEMPORAL HETERODYNING 235 5.4.2 TECHNICAL REALIZATION OF
TEMPORAL HETERODYNING 237 5.4.3 ERRORS OF TEMPORAL HETERODYNING 238
5.4.4 EXPERIMENTAL APPLICATION OF TEMPORAL HETERODYNING 240 VIII
CONTENTS 5.5 PHASE SAMPLING EVALUATION 242 5.5.1 PHASE SHIFTING AND
PHASE STEPPING 243 5.5.2 SOLUTION OF THE PHASE SAMPLING EQUATIONS WITH
KNOWN PHASE SHIFTS 245 5.5.3 SOLUTION OF THE PHASE SAMPLING EQUATIONS
WITH UNKNOWN PHASE SHIFTS 248 5.5.4 APPLICATION OF PHASE SHIFT
EVALUATION METHODS 251 5.5.5 DISCUSSION OF PHASE SHIFT EVALUATION
METHODS 255 5.6 FOURIER TRANSFORM EVALUATION 256 5.6.1 PRINCIPLE OF THE
FOURIER TRANSFORM EVALUATION METHOD 256 5.6.2 NOISE REDUCTION BY SPATIAL
FILTERING 258 5.6.3 SPATIAL FILTERING AND SIGN AMBIGUITY 260 5.6.4
FOURIER TRANSFORM EVALUATION OF PHASE SHIFTED INTERFEROGRAMS ... 261
5.6.5 SPATIAL HETERODYNING 263 5.6.6 SPATIAL SYNCHRONOUS DETECTION 265
5.7 DYNAMIC EVALUATION 266 5.7.1 PRINCIPLES OF DYNAMIC EVALUATION 266
5.7.2 DYNAMIC EVALUATION BY A SCANNING REFERENCE BEAM 268 5.8 DIGITAL
HOLOGRAPHIC INTERFEROMETRY 269 5.8.1 DIGITAL PHASE SUBTRACTION 269 5.8.2
ENHANCEMENT OF INTERFERENCE PHASE IMAGES BY DIGITAL FILTERING . . . 273
5.8.3 EVALUATION OF SERIES OF HOLOGRAMS 275 5.8.4 COMPENSATION OF MOTION
COMPONENTS 278 5.8.5 MULTIPLEXED HOLOGRAMS DISCRIMINATED IN DEPTH 280
5.8.6 MULTIPLEXED HOLOGRAMS WITH DISCRIMINATION BY PARTIAL SPECTRA . . .
282 5.9 INTERFERENCE PHASE DEMODULATION 287 5.9.1 PREREQUISITES FOR
INTERFERENCE PHASE DEMODULATION 287 5.9.2 PATH-DEPENDENT INTERFERENCE
PHASE DEMODULATION 288 5.9.3 PATH-INDEPENDENT INTERFERENCE PHASE
DEMODULATION 289 5.9.4 INTERFERENCE PHASE DEMODULATION BY CELLULAR
AUTOMATA 292 5.9.5 FURTHER APPROACHES TO INTERFERENCE PHASE DEMODULATION
294 6 PROCESSING OF THE INTERFERENCE PHASE 297 6. 1 DISPLACEMENT
DETERMINATION 297 6.1.1 DISPLACEMENT DETERMINATION WITH KNOWN REFERENCE
DISPLACEMENT . 298 6.1.2 DISPLACEMENT DETERMINATION WITH UNKNOWN
REFERENCE DISPLACEMENT 299 6.1.3 ELIMINATION OF OVERALL DISPLACEMENT 301
6.1.4 NON-VIBRATION ISOLATED OBJECTS 303 6.2 THE SENSITIVITY MATRIX 306
6.2.1 DETERMINATION OF THE SENSITIVITY VECTORS 306 6.2.2 CORRECTION OF
PERSPECTIVE DISTORTION 307 6.2.3 CONDITION OF THE SENSITIVITY MATRIX 310
6.3 HOLOGRAPHIC STRAIN AND STRESS ANALYSIS 311 6.3.1 DEFINITION OF
ELASTOMECHANICAL PARAMETERS 311 6.3.2 BEAMS AND PLATES 314 6.3.3
NUMERICAL DIFFERENTIATION 317 6.3.4 FRINGE VECTOR THEORY 318 CONTENTS IX
6.4 HYBRID METHODS 321 6.4.1 FINITE ELEMENT METHODS AND HOLOGRAPHIC
INTERFEROMETRY 321 6.4.2 BOUNDARY ELEMENT METHODS AND HOLOGRAPHIC
INTERFEROMETRY .... 322 6.4.3 FRACTURE MECHANICS 322 6.5 VIBRATION
ANALYSIS 323 6.5.1 SURFACE VIBRATIONS 323 6.5.2 STROBOSCOPIC AND
REAL-TIME HOLOGRAPHIC INTERFEROMETRY 325 6.5.3 TIME AVERAGE HOLOGRAPHIC
INTERFEROMETRY 326 6.5.4 TEMPORALLY MODULATED REFERENCE WAVE 327 6.5.5
NUMERICAL ANALYSIS OF TIME AVERAGE HOLOGRAMS 331 6.5.6 VIBRATION
ANALYSIS BY DIGITAL HOLOGRAPHY 332 6.6 HOLOGRAPHIC CONTOURING 333 6.6.1
CONTOURING BY WAVELENGTH DIFFERENCES 333 6.6.2 CONTOURING BY REFRACTIVE
INDEX VARIATION 336 6.6.3 CONTOURING BY VARIED ILLUMINATION DIRECTION
337 6.6.4 CONTOURING BY LIGHT-IN-FLIGHT RECORDING 338 6.7 CONTOUR
MEASUREMENT BY DIGITAL HOLOGRAPHY 339 6.7.1 CONTOURING BY DIGITAL
HOLOGRAPHIC INTERFEROMETRY 340 6.7.2 CONTOURING BY DIGITAL
MULTI-WAVELENGTH HOLOGRAPHY 343 6.7.3 HOLOGRAPHIC CONTOURING BY DIGITAL
LIGHT-IN-FLIGHT MEASUREMENT . . 345 6.8 COMPARATIVE HOLOGRAPHIC
INTERFEROMETRY 349 6.8.1 PRINCIPLES OF COMPARATIVE HOLOGRAPHIC
INTERFEROMETRY 349 6.8.2 DIGITAL COMPARATIVE HOLOGRAPHY 353 6.9
MEASUREMENT RANGE EXTENSION 356 6.9.1 TWO-WAVELENGTH HOLOGRAPHIC
INTERFEROMETRY 357 6.9.2 HOLOGRAPHIC MOIRE 358 6.9.3 HOLOGRAPHIC
INTERFEROMETRY AT ROTATING OBJECTS 360 6.9.4 ENDDSCOPIC HOLOGRAPHIC
INTERFEROMETRY 364 6.9.5 DESENSITIZED HOLOGRAPHIC INTERFEROMETER 365
6.10 REFRACTIVE INDEX FIELDS IN TRANSPARENT MEDIA 366 6.10.1 REFRACTION
OF PHASE OBJECTS 366 6.10.2 PHYSICAL QUANTITIES AFFECTING THE REFRACTIVE
INDEX FIELD 370 6.10.3 TWO-DIMENSIONAL REFRACTIVE INDEX FIELDS 374
6.10.4 HOLOGRAPHIC INTERFEROMETRY OF CIRCULAR SYMMETRIC REFRACTIVE INDEX
FIELDS 376 6.10.5 MULTIDIRECTIONAL RECORDING OF ASYMMETRIC REFRACTIVE
INDEX FIELDS . 377 6.10.6 TOMOGRAPHIC RECONSTRUCTION IN THE
REFRACTIONLESS LIMIT 378 6.10.7 TOMOGRAPHIC RECONSTRUCTION OF STRONGLY
REFRACTING FIELDS 382 6.10.8 ANALYSIS OF TRANSPARENT MEDIA WITH DIGITAL
HOLOGRAPHY 384 6.10.9 RESONANCE HOLOGRAPHIC INTERFEROMETRY 385 6.11
DEFECT DETECTION BY HOLOGRAPHIC NON-DESTRUCTIVE TESTING 387 6.11.1
CLASSIFICATION OF DEFECTS 387 6.11.2 DATA REDUCTION FOR AUTOMATIC
QUALITATIVE EVALUATION 389 6.11.3 NEURAL NETWORK APPROACH TO QUALITATIVE
EVALUATION 393 X CONTENTS 7 SPECKLE METROLOGY 399 7.1 SPECKLE
PHOTOGRAPHY 399 7.2 ELECTRONIC AND DIGITAL SPECKLE INTERFEROMETRY 400
7.3 ELECTRO-OPTIC HOLOGRAPHY 404 7.4 SPECKLE SHEAROGRAPHY 405 APPENDIX A
SIGNAL PROCESSING FUNDAMENTALS 409 A. I OVERVIEW 409 A.2 DEFINITION OF
THE FOURIER TRANSFORM 410 A.3 INTERPRETATION OF THE FOURIER TRANSFORM
412 A.4 PROPERTIES OF THE FOURIER TRANSFORM 415 A.5 LINEAR SYSTEMS 416
A.6 FOURIER ANALYSIS OF SAMPLED FUNCTIONS 420 A.7 THE SAMPLING THEOREM
AND DATA TRUNCATION EFFECTS 423 A.8 INTERPOLATION AND RESAMPLING 427 A.9
TWO-DIMENSIONAL IMAGE PROCESSING 429 A. 10 THE FAST FOURIER TRANSFORM
434 A.LL FAST FOURIER TRANSFORM FOR N ^ 2 N 437 A. 12 COSINE AND HARTLEY
TRANSFORM 439 A. 13 THE CHIRP FUNCTION AND THE FRESNEL TRANSFORM 441 B
COMPUTER AIDED TOMOGRAPHY 447 B.I MATHEMATICAL PRELIMINARIES 447 B.2 THE
GENERALIZED PROJECTION THEOREM 448 B.3 RECONSTRUCTION BY FILTERED
BACKPROJECTION 451 B.4 PRACTICAL IMPLEMENTATION OF FILTERED
BACKPROJECTION 453 B.5 ALGEBRAIC RECONSTRUCTION TECHNIQUES 454 C BESSEL
FUNCTIONS 459 BIBLIOGRAPHY 463 AUTHOR INDEX 513 SUBJECT INDEX 527
|
any_adam_object | 1 |
author | Kreis, Thomas 1952- |
author_GND | (DE-588)1100087001 |
author_facet | Kreis, Thomas 1952- |
author_role | aut |
author_sort | Kreis, Thomas 1952- |
author_variant | t k tk |
building | Verbundindex |
bvnumber | BV019848805 |
callnumber-first | T - Technology |
callnumber-label | TA1555 |
callnumber-raw | TA1555 |
callnumber-search | TA1555 |
callnumber-sort | TA 41555 |
callnumber-subject | TA - General and Civil Engineering |
classification_rvk | UH 5450 |
classification_tum | MSR 415f |
ctrlnum | (OCoLC)57281223 (DE-599)BVBBV019848805 |
dewey-full | 620 621.3675 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations 621 - Applied physics |
dewey-raw | 620 621.3675 |
dewey-search | 620 621.3675 |
dewey-sort | 3620 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen Physik Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik |
format | Book |
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id | DE-604.BV019848805 |
illustrated | Illustrated |
indexdate | 2024-07-09T20:07:31Z |
institution | BVB |
isbn | 3527405461 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-013173551 |
oclc_num | 57281223 |
open_access_boolean | |
owner | DE-703 DE-83 DE-91 DE-BY-TUM |
owner_facet | DE-703 DE-83 DE-91 DE-BY-TUM |
physical | XII, 542 S. Ill., graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
publishDateSort | 2005 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Kreis, Thomas 1952- Verfasser (DE-588)1100087001 aut Handbook of holographic interferometry optical and digital methods Thomas Kreis Weinheim Wiley-VCH 2005 XII, 542 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturverz. S. 463 - 511 Holographic interferometry Spannungsanalyse (DE-588)4055995-6 gnd rswk-swf Holographische Interferometrie (DE-588)4123390-6 gnd rswk-swf Zerstörungsfreie Werkstoffprüfung (DE-588)4067689-4 gnd rswk-swf Holographische Interferometrie (DE-588)4123390-6 s Zerstörungsfreie Werkstoffprüfung (DE-588)4067689-4 s DE-604 Spannungsanalyse (DE-588)4055995-6 s HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013173551&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Kreis, Thomas 1952- Handbook of holographic interferometry optical and digital methods Holographic interferometry Spannungsanalyse (DE-588)4055995-6 gnd Holographische Interferometrie (DE-588)4123390-6 gnd Zerstörungsfreie Werkstoffprüfung (DE-588)4067689-4 gnd |
subject_GND | (DE-588)4055995-6 (DE-588)4123390-6 (DE-588)4067689-4 |
title | Handbook of holographic interferometry optical and digital methods |
title_auth | Handbook of holographic interferometry optical and digital methods |
title_exact_search | Handbook of holographic interferometry optical and digital methods |
title_full | Handbook of holographic interferometry optical and digital methods Thomas Kreis |
title_fullStr | Handbook of holographic interferometry optical and digital methods Thomas Kreis |
title_full_unstemmed | Handbook of holographic interferometry optical and digital methods Thomas Kreis |
title_short | Handbook of holographic interferometry |
title_sort | handbook of holographic interferometry optical and digital methods |
title_sub | optical and digital methods |
topic | Holographic interferometry Spannungsanalyse (DE-588)4055995-6 gnd Holographische Interferometrie (DE-588)4123390-6 gnd Zerstörungsfreie Werkstoffprüfung (DE-588)4067689-4 gnd |
topic_facet | Holographic interferometry Spannungsanalyse Holographische Interferometrie Zerstörungsfreie Werkstoffprüfung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013173551&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT kreisthomas handbookofholographicinterferometryopticalanddigitalmethods |