Optics of liquid crystal displays:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken NJ
Wiley
2010
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Ausgabe: | 2. ed. |
Schriftenreihe: | Wiley series in pure and applied optics
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 770 S. Ill., graph. Darst. |
ISBN: | 9780470181768 |
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adam_text | OPTICS OF LIQUID CRYSTAL DISPLAYS SECOND EDITION POCHIYEH CLAIRE GU
WILEY A JOHN WILEY & SONS, INC., PUBLICATION CONTENTS PREFACE XIII
PREFACE TO THE FIRST EDITION XV CHAPTER 1. PRELIMINARIES 1 1.1. BASIC
COMPONENTS OF LCDS 2 1.1.1. POLARIZERS 2 1.1.2. TRANSPARENT ELECTRODES 4
1.1.3. LIQUID CRYSTAL CELL 6 1.1.4. BIREFRINGENT THIN FILM COMPENSATORS
7 1.1.5. COLOR FILTERS 8 1.1.6. BRIGHTNESS ENHANCEMENT FILMS (BEFS) 9
1.1.7. AM AND TFTS (ACTIVE MATRIX AND THIN FILM TRANSISTORS) 11 1.1.8.
DIFFUSERS 12 1.1.9. BACKLIGHTS 14 1.2. PROPERTIES OF LIQUID CRYSTALS 15
1.2.1. ORIENTATIONAL ORDER PARAMETER 20 1.2.2. DIELECTRIC CONSTANTS 21
1.2.3. REFRACTIVE INDEX 24 1.2.4. ELASTIC CONSTANTS 26 1.2.5.
VISCOSITY*ROTATIONAL VISCOSITY 27 1.2.6. SURFACE ALIGNMENT AND RUBBING
27 1.2.7. FIELD-INDUCED DISTORTION*ELECTRO-OPTICAL EFFECT 30 1.2.8.
DYNAMICS OF MOLECULAR ROTATION*RISE TIME AND DECAY TIME 39 REFERENCES 47
SUGGESTED READINGS 48 PROBLEMS 48 CHAPTER 2. POLARIZATION OF OPTICAL
WAVES 54 2.1. MONOCHROMATIC PLANE WAVES AND THEIR POLARIZATION STATES 54
2.1.1. LINEAR POLARIZATION STATES 56 2.1.2. CIRCULAR POLARIZATION STATES
57 2.1.3. ELLIPTICAL POLARIZATION STATES 57 2.2. COMPLEX NUMBER
REPRESENTATION 61 2.3. JONES VECTOR REPRESENTATION 62 2.4. PARTIALLY
POLARIZED AND UNPOLARIZED LIGHT 64 VI CONTENTS 2.5. POINCARE SPHERE 67
2.5.1. PHASE RETARDERS 70 2.5.2. POLARIZATION TRANSFORMATION USING
RETARDERS AND THE GRAPHICAL REPRESENTATION ON THE POINCARE SPHERE 71
2.5.3. PANCHARATNAM PHASE 77 REFERENCES 78 PROBLEMS 78 CHAPTER 3.
ELECTROMAGNETIC PROPAGATION IN ANISOTROPIC MEDIA 82 3.1. MAXWELL
EQUATIONS AND DIELECTRIC TENSOR 82 3.1.1. LORENTZ RECIPROCITY THEOREM 89
3.2. PLANE WAVES IN HOMOGENEOUS MEDIA AND NORMAL SURFACE 90 3.2.1. * IN
THE XY-PLANE 95 3.2.2. * IN THE YZ-PLANE 95 3.2.3. * IN THE Z*-PLANE 96
3.2.4. CLASSIFICATION OF MEDIA 97 3.2.5. POWER FLOW IN ANISOTROPIC MEDIA
(I) 100 3.2.6. POWER FLOW IN ANISOTROPIC MEDIA (II) 104 3.3. LIGHT
PROPAGATION IN UNIAXIAL MEDIA 107 3.3.1. PROPAGATION PERPENDICULAR TO
THE C-AXIS 109 3.3.2. PROPAGATION IN THE **-*1*** 110 3.3.3. PROPAGATION
ALONG THE C-AXIS 111 3.4. DOUBLE REFRACTION AT A BOUNDARY 112 3.5.
ANISOTROPIC ABSORPTION AND POLARIZERS 126 3.5.1. EXTINCTION RATIO AND
REAL SHEET POLARIZERS 127 3.5.2. FIELD OF VIEW OF CROSSED POLARIZERS 128
3.5.3. POLARIZATION STATES D O1 AND D O2 130 3.5.4. REFLECTIVE
POLARIZERS 133 3.6. OPTICAL ACTIVITY AND FARADAY ROTATION 139 3.6.1.
FARADAY ROTATION 149 3.7. LIGHT PROPAGATION IN BIAXIAL MEDIA 151 3.7.1.
METHOD OF INDEX ELLIPSOID 154 3.7.2. PERTURBATION APPROACH 158 3.7.3.
CLASSIFICATION OF BIAXIAL CRYSTALS 160 REFERENCES 162 PROBLEMS 163
CHAPTER 4. JONES MATRIX METHOD 173 4.1. JONES MATRIX FORMULATION 173
4.1.1. EXAMPLE: A HALF-WAVE RETARDATION PLATE 178 4.1.2. EXAMPLE: A
QUARTER-WAVE PLATE 178 4.1.3. GENERAL PROPERTIES OF THE JONES MATRIX 179
4.1.4. EIGNVECTORS OF JONES MATRIX 186 CONTENTS 4.1.5. LINEARLY
POLARIZED INPUTS WITH LINEARLY POLARIZED OUTPUTS 188 4.1.6. EQUIVALENT
CIRCUIT OF A GENERAL BIREFRINGENT NETWORK 190 4.1.7. TUNABLE WAVE PLATES
192 4.1.8. CIRCULAR AND QUASI-CIRCULAR POLARIZERS 194 4.2. INTENSITY
TRANSMISSION SPECTRUM 199 4.2.1. EXAMPLE: A BIREFRINGENT PLATE
SANDWICHED BETWEEN PARALLEL POLARIZERS (AN A-PLATE BETWEEN PARALLEL
POLARIZERS) 201 4.2.2. EXAMPLE: A BIREFRINGENT PLATE SANDWICHED BETWEEN
A PAIR OF CROSSED POLARIZERS (AN A-PLATE BETWEEN CROSSED POLARIZERS) 202
4.2.3. EXAMPLE: A BIREFRINGENT PLATE SANDWICHED BETWEEN A PAIR OF
POLARIZERS (AN A-PLATE BETWEEN TWO POLARIZERS) 203 4.2.4. EXAMPLE: A
BIREFRINGENT PLATE SANDWICHED BETWEEN A PAIR OF POLARIZERS (A C-PLATE
BETWEEN TWO POLARIZERS) 204 4.2.5. EXAMPLE: A BIREFRINGENT PLATE
SANDWICHED BETWEEN A PAIR OF CROSSED POLARIZERS (A C-PLATE BETWEEN
CROSSED POLARIZERS) 204 4.2.6. EXAMPLE: A BIREFRINGENT PLATE SANDWICHED
BETWEEN A PAIR OF PARALLEL POLARIZERS (A C-PLATE BETWEEN PARALLEL
POLARIZERS) 204 4.2.7. AN ALTERNATIVE APPROACH 205 4.2.8. METHOD OF
PROJECTION OPERATORS AND PROPAGATION OPERATORS 206 4.3. OPTICAL
PROPERTIES OF TN-LC (ADIABATIC FOLLOWING OR WAVEGUIDING) 208 4.3.1.
ADIABATIC FOLLOWING (WAVEGUIDING IN TN-LC) 210 4.3.2. 90 TN-LC 211
4.3.3. TRANSMISSION PROPERTIES OF A GENERAL TN-LCD 215 4.3.4. NORMAL
MODES OF PROPAGATION IN A GENERAL TN-LC 218 4.4. PHASE RETARDATION AT
OBLIQUE INCIDENCE 224 4.4.1. A-PLATES 225 4.4.2. C-PLATES 228 4.5.
CONOSCOPY 229 4.5.1. A-PLATE OF UNIAXIAL SAMPLES 229 4.5.2. C-PLATE OF
UNIAXIAL CRYSTALS 231 4.5.3. C-CUT BIAXIAL PLATE 233 4.6. REFLECTION
PROPERTY OF A GENERAL TN-LCD WITH A BACK MIRROR 234 VUL CONTENTS 4.7.
PHASE RETARDATION OF A BIAXIAL PLATE 242 4.7.1. SMALL 0 APPROXIMATION
(ASSUME A 1, SS 1) 246 4.7.2. THE POLARIZATION STATES OF MODES OF
PROPAGATION 247 4.7.3. POLARIZATION STATES OF ORDINARY MODE IN
POLARIZERS 252 4.8. ACHROMATIC WAVE PLATES 254 4.9. BROADBAND
QUASI-CIRCULAR POLARIZERS 264 4.10. WIDE FIELD-OF-VIEW ELEMENTS 269
4.10.1. LYOT-I WIDE FIELD-OF-VIEW ELEMENTS 271 4.10.2. LYOT-II WIDE
FIELD-OF-VIEW ELEMENTS 273 4.10.3. LYOT-III WIDE FIELD-OF-VIEW ELEMENTS
275 REFERENCES 276 SUGGESTED READINGS 276 PROBLEMS 277 CHAPTER 5. LIQUID
CRYSTAL DISPLAYS 290 5.1. VA-LCDS 291 5.1.1. PRINCIPLE OF OPERATION 291
5.1.2. TRANSMISSION PROPERTY OF FIELD-OFF STATE 293 5.1.3. TRANSMISSION
PROPERTY OF FIELD-ON STATE 294 5.1.4. MULTIDOMAIN VERTICALLY ALIGNED
LIQUID CRYSTAL DISPLAY (MVA-LCD) 312 5.2. IPS-LCDS 316 5.2.1. PRINCIPLES
OF OPERATION 317 5.2.2. TRANSMISSION PROPERTY OF FIELD-OFF STATE 320
5.2.3. TRANSMISSION PROPERTY OF FIELD-ON STATE 324 5.3 TN-LCDS 331
5.3.1. PRINCIPLE OF OPERATION 332 5.3.2. TRANSMISSION PROPERTY OF
FIELD-OFF STATE 335 5.3.3. TRANSMISSION PROPERTY OF FIELD-ON STATE 339
5.4. STN DISPLAYS 365 5.4.1. STEEPNESS OF ELECTRODISTORTION CURVES OF
STN CELL 367 5.4.2. TRANSMISSION PROPERTIES OF STN-LCD IN THE FIELD-OFF
STATE 374 5.4.3 TRANSMISSION OF STN-LCD IN THE FIELD-ON STATE 381 5.5.
NEMATIC LIQUID CRYSTAL DISPLAY (N-LCD) MODES 388 5.5.1. PA CELLS 389
5.5.2. BEND-ALIGNED (BA) CELLS 394 5.6. POLYMER-DISPERSED LIQUID CRYSTAL
DISPLAYS (PD-LCDS) 398 5.7. REFLECTIVE LCDS 404 5.8. TRANSFLECTIVE LCDS
407 CONTENTS IX 5.9. 5.10. 5.11. »TER 6. 6.1. 6.2. 6.3. 6.4. *TER 7.
7.1. 7.2. 7.3. 7.4. 7.5. 7.6. PROJECTION DISPLAYS OTHER DISPLAY SYSTEMS
5.10.1. FERROELECTRIC LCDS 5.10.2. CHOLESTERIC LCD 5.10.3. LIQUID
CRYSTAL ON SILICON (LCOS) SUMMARY REFERENCES SUGGESTED READINGS PROBLEMS
MATRIX ADDRESSING, COLORS, AND PROPERTIES OF LCDS MULTIPLEXED DISPLAYS
ACTIVE MATRIX (AM) DISPLAYS 6.2.1. PRINCIPLE OF THIN FILM TRANSISTOR
(TFT) OPERATION 6.2.2. ARRAY FABRICATION 6.2.3. CELL ASSEMBLY OPTICAL
THROUGHPUT OF TFT-LCDS 6.3.1. POLARIZERS 6.3.2. COLOR FILTERS COLORS IN
LCDS 6.4.1. ADDITION (OR MIXING) OF COLORS AND CIE 1976 COLOR SPACE
(L*U*V*) REFERENCES SUGGESTED READINGS PROBLEMS OPTICAL PROPERTIES OF
CHOLESTERIC LIQUID CRYSTALS OPTICAL PHENOMENA IN CLCS DIELECTRIC TENSOR
OF AN IDEAL CLC EXACT SOLUTIONS AT NORMAL INCIDENCE 7.3.1. DISPERSION
RELATION 7.3.2. POLARIZATION STATES OF NORMAL MODES 7.3.3. POWER
ORTHOGONALITY BRAGG REGIME {N 0 P X N E P) *COUPLED-MODE ANALYSIS
7.4.1. REFLECTANCE OF CLCS MAUGUIN REGIME (A, 0.5/?AN) CIRCULAR REGIME
7.6.1. SHORT WAVELENGTH CIRCULAR REGIME (0.5NPAN X P) 7.6.2. LONG
WAVELENGTH CIRCULAR REGIME (NJ X) REFERENCES SUGGESTED READINGS
PROBLEMS 410 412 412 416 417 419 419 421 422 426 426 430 431 440 445 446
446 448 450 452 457 458 458 461 461 462 465 466 467 471 471 475 477 479
479 479 481 481 481 X CONTENTS CHAPTER 8. EXTENDED JONES MATRIX METHOD
485 8.1. MATHEMATICAL FORMULATION AND APPLICATIONS 486 8.1.1. REFLECTION
AND REFRACTION AT THE INTERFACE 486 8.1.2. MATRIX FORMULATION 493 8.1.3.
SMALL BIREFRINGENCE APPROXIMATION 495 8.1.4. COMPARISON WITH THE
CONVENTIONAL JONES CALCULUS 500 8.1.5. CROSSED POLARIZERS 502 8.1.6.
ARBITRARY C-AXIS ORIENTATION 505 8.1.7. APPLICATION TO LCDS 509 8.1.8.
GENERALIZED JONES MATRIX METHOD 517 8.2. ANOTHER EXTENDED JONES MATRIX
METHOD 523 8.3. 4X4 MATRIX METHOD 526 8.3.1. MATHEMATICAL FORMULATION
526 8.3.2. REFLECTION AND TRANSMISSION 530 8.3.3. BERREMAN S 4X4 MATRIX
METHOD 532 8.4. GENERAL PROPERTIES OF A 4 X 4 MATRIX 533 8.5. MUELLER
MATRIX ALGEBRA AND JONES MATRIX ALGEBRA 546 8.6. RECIPROCITY THEOREM IN
ANISOTROPIC LAYERED MEDIA 562 REFERENCES 567 PROBLEMS 567 CHAPTER 9.
OPTICAL COMPENSATORS FOR LIQUID CRYSTAL DISPLAYS 570 9.1. VIEWING ANGLE
CHARACTERISTICS OF LCDS 571 9.1.1. TN-LCDS 572 9.1.2. VA-LCDS 579 9.1.3.
MULTIDOMAIN VA-LCDS (MVA-LCDS) 589 9.1.4. IPS-LCDS 589 9.2. ORIGIN OF
LEAKAGE OF LIGHT IN LCDS AND COMPENSATORS 595 9.2.1. LEAKAGE OF LIGHT
THROUGH CROSSED POLARIZERS 598 9.2.2. LEAKAGE OF LIGHT DUE TO LC CELL
601 9.2.3. BIREFRINGENT THIN FILM COMPENSATORS 605 9.3. LCDS WITH
COMPENSATORS 614 9.3.1. CR IMPROVEMENT IN LCDS WITH BIREFRINGENCE
COMPENSATORS AND POLARIZATION COMPENSATORS 615 9.3.2. GRAY LEVEL
PERFORMANCE OF LCDS WITH BIREFRINGENCE COMPENSATORS AND POLARIZATION
COMPENSATORS 631 9.4. COMPENSATION FILM WITH POSITIVE BIREFRINGENCE
(O-PLATE) 648 9.5. BIAXIAL COMPENSATION FILM 654 9.6. MATERIALS FOR
OPTICAL PHASE RETARDATION COMPENSATION 659 9.6.1. OE-PLATES 659 9.6.2.
OPLATES 659 9.6.3. O-PLATES 659 CONTENTS XI 9.6.4. FORM BIREFRINGENCE
660 9.6.5. FORM BIREFRINGENCE IN THIN-LAYERED MEDIA 660 9.6.6. FORM
BIREFRINGENCE IN COMPOSITE MEDIA 662 REFERENCES 664 PROBLEMS 666
APPENDIX A. ELASTIC AND ELECTROMAGNETIC ENERGY DENSITY 674 APPENDIX B.
ELECTRO-OPTICAL DISTORTION*TILT MODE 680 APPENDIX *. ELECTRO-OPTICAL
DISTORTION*TWIST MODE 689 APPENDIX D. ELECTRO-OPTICAL DISTORTION IN A
TN-LC 694 APPENDIX E. ELECTRO-OPTICAL DISTORTION IN AN STN-LC 702
APPENDIX F. FORM BIREFRINGENCE OF COMPOSITE MEDIA 709 APPENDIX G.
SPHERICAL TRIGONOMETRY 712 APPENDIX H. MIE SCATTERING AND DIFFUSERS 721
APPENDIX I. VARIATIONAL PRINCIPLES AND LAGRANGE S EQUATIONS 741 AUTHOR
INDEX 745 SUBJECT INDEX 749
|
any_adam_object | 1 |
author | Yeh, Pochi Gu, Claire |
author_facet | Yeh, Pochi Gu, Claire |
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dewey-hundreds | 600 - Technology (Applied sciences) |
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dewey-raw | 621.3815422 |
dewey-search | 621.3815422 |
dewey-sort | 3621.3815422 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik Werkstoffwissenschaften / Fertigungstechnik |
edition | 2. ed. |
format | Book |
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illustrated | Illustrated |
indexdate | 2024-07-09T22:36:34Z |
institution | BVB |
isbn | 9780470181768 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020163180 |
oclc_num | 699279414 |
open_access_boolean | |
owner | DE-11 |
owner_facet | DE-11 |
physical | XVI, 770 S. Ill., graph. Darst. |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Wiley |
record_format | marc |
series2 | Wiley series in pure and applied optics |
spelling | Yeh, Pochi Verfasser aut Optics of liquid crystal displays Pochi Yeh ; Claire Gu 2. ed. Hoboken NJ Wiley 2010 XVI, 770 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Wiley series in pure and applied optics Flüssigkristallanzeige (DE-588)4017624-1 gnd rswk-swf Optische Eigenschaft (DE-588)4123887-4 gnd rswk-swf Flüssigkristallanzeige (DE-588)4017624-1 s Optische Eigenschaft (DE-588)4123887-4 s DE-604 Gu, Claire Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020163180&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Yeh, Pochi Gu, Claire Optics of liquid crystal displays Flüssigkristallanzeige (DE-588)4017624-1 gnd Optische Eigenschaft (DE-588)4123887-4 gnd |
subject_GND | (DE-588)4017624-1 (DE-588)4123887-4 |
title | Optics of liquid crystal displays |
title_auth | Optics of liquid crystal displays |
title_exact_search | Optics of liquid crystal displays |
title_full | Optics of liquid crystal displays Pochi Yeh ; Claire Gu |
title_fullStr | Optics of liquid crystal displays Pochi Yeh ; Claire Gu |
title_full_unstemmed | Optics of liquid crystal displays Pochi Yeh ; Claire Gu |
title_short | Optics of liquid crystal displays |
title_sort | optics of liquid crystal displays |
topic | Flüssigkristallanzeige (DE-588)4017624-1 gnd Optische Eigenschaft (DE-588)4123887-4 gnd |
topic_facet | Flüssigkristallanzeige Optische Eigenschaft |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020163180&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT yehpochi opticsofliquidcrystaldisplays AT guclaire opticsofliquidcrystaldisplays |