Quantum electronics:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York
Wiley
1989
|
Ausgabe: | 3. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | XX, 676 S. graph. Darst. |
ISBN: | 0471609978 0471617717 9780471609971 |
Internformat
MARC
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Datensatz im Suchindex
_version_ | 1804117125553455104 |
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adam_text | QUANTUM ELECTRONICS THIRD EDITION AMNON YARIV CALIFORNIA INSTITUTE OF
TECHNOLOGY JOHN WILEY & SONS WILEY NEW YORK * CHICHESTER * BRISBANE *
TORONTO * SINGAPORE CONTENTS CHAPTER 1 BASIC THEOREMS AND POSTULATES OF
QUANTUM MECHANICS 1 1.0 INTRODUCTION 1 1.1 THE SCHROEDINGER WAVE EQUATION
1 1.2 THE TIME-INDEPENDENT SCHROEDINGER WAVE EQUATION 7 CHAPTER 2 SOME
SOLUTIONS OF THE TIME-INDEPENDENT SCHROEDINGER EQUATION 18 2.0
INTRODUCTION 18 2.1 PARITY 18 2.2 THE HARMONIE OSCILLATOR 19 2.3 THE
SCHROEDINGER EQUATION IN SPHERICALLY SYMMETRIE POTENTIAL FIELDS 27 2.4
THE ANGULAR MOMENTUM OPERATORS AND THEIR EIGENFUNCTIONS 30 CHAPTER 3
MATRIX FORMULATION OF QUANTUM MECHANICS 34 3.0 INTRODUCTION 34 3.1 SOME
BASIC MATRIX PROPERTIES 34 3.2 TRANSFORMATION OF A SQUARE MATRIX 35 3.3
MATRIX DIAGONALIZATION 36 3.4 REPRESENTATIONS OF OPERATORS AS MATRICES
36 3.5 TRANSFORMATION OF OPERATOR REPRESENTATIONS 38 3.6 DERIVING THE
EIGENFUNCTIONS AND EIGENVALUES OF AN OPERATOR BY THE MATRIX METHOD 39
3.7 THE HEISENBERG EQUATIONS OF MOTION 41 3.8 MATRIX ELEMENTS OF THE
ANGULAR MOMENTUM OPERATORS 42 3.9 SPIN ANGULAR MOMENTA 45 3.10 ADDITION
OF ANGULAR MOMENTUM 45 3.11 TIME-INDEPENDENT PERTURBATION THEORY 47 XIII
XIV CONTENTS 3.12 TIME-DEPENDENT PERTURBATION THEORY*RELATION TO LINE
BROADENING 50 3.13 DENSITY MATRICES*INTRODUCTION 56 3.14 THE DENSITY
MATRIX 56 3.15 THE ENSEMBLE AVERAGE 57 3.16 TIME EVOLUTION OF THE
DENSITY MATRIX 58 3.17 THE TIME EVOLUTION OPERATOR-FEYNMAN DIAGRAMS 58
CHAPTER 4 LATTICE VIBRATIONS AND THEIR QUANTIZATION 68 4.0 INTRODUCTION
68 4.1 MOTION OF HOMOGENEOUS LINE 68 4.2 WAVE MOTION OF A LINE OF
SIMILAR ATOMS 69 4.3 A LINE WITH TWO DIFFERENT ATOMS 71 4.4 LATTICE SUMS
74 4.5 QUANTIZATION OF THE ACOUSTIC BRANCH OF LATTICE VIBRATIONS 76 4.6
AVERAGE THERMAL EXCITATION OF LATTICE MODES 80 CHAPTER 5 ELECTROMAGNETIC
FIELDS AND THEIR QUANTIZATION 83 5.0 INTRODUCTION 83 5.1 POWER
TRANSPORT, STORAGE, AND DISSIPATION IN ELECTROMAGNETIC FIELDS 83 5.2
PROPAGATION OF ELECTROMAGNETIC WAVES IN ANISOTROPIE CRYSTALS 87 5.3 THE
INDEX ELLIPSOID 90 5.4 PROPAGATION IN UNIAXIAL CRYSTALS 92 5.5 NORMAL
MODE EXPANSION OF THE ELECTROMAGNETIC FIELD IN A RESONATOR 94 5.6 THE
QUANTIZATION OF THE RADIATION FIELD 96 5.7 MODE DENSITY AND BLACKBODY
RADIATION 99 5.8 THE COHERENT STATE 100 CHAPTER 6 THE PROPAGATION OF
OPTICAL BEAMS IN HOMOGENEOUS AND LENSLIKE MEDIA 106 6.0 INTRODUCTION 106
6.1 THE LENS WAVEGUIDE 106 6.2 THE IDENTICAL-LENS WAVEGUIDE 111 6.3 THE
PROPAGATION OF RAYS BETWEEN MIRRORS 111 6.4 RAYS IN LENSLIKE MEDIA 112
6.5 THE WAVE EQUATION IN QUADRATIC INDEX MEDIA 115 6.6 THE GAUSSIAN BEAM
IN A HOMOGENEOUS MEDIUM 116 CONTENTS XV 6.7 THE FUNDAMENTAL GAUSSIAN
BEAM IN A LENSLIKE MEDIUM*THE ABCD LAW 120 6.8 A GAUSSIAN BEAM IN A LENS
WAVEGUIDE 123 6.9 HIGH-ORDER GAUSSIAN BEAM MODES IN A HOMOGENEOUS MEDIUM
124 6.10 HIGH-ORDER GAUSSIAN BEAM MODES IN QUADRATIC INDEX MEDIA 125
6.11 PROPAGATION IN MEDIA WITH A QUADRATIC GAIN PROFILE 127 6.12
ELLIPTIC GAUSSIAN BEAMS 129 CHAPTER 7 OPTICAL RESONATORS 136 7.0
INTRODUCTION 136 7.1 SPHERICAL MIRROR RESONATORS 136 7.2 MODE STABILITY
(CONFINEMENT) CRITERIA AND THE SELF-CONSISTENT RESONATOR SOLUTIONS 141
7.3 THE RESONANCE FREQUENCIES 145 7.4 LOSSES IN OPTICAL RESONATORS 147
7.5 UNSTABLE OPTICAL RESONATORS 149 CHAPTER 8 INTERACTION OF RADIATION
AND ATOMIC SYSTEMS 155 8.0 INTRODUCTION 155 8.1 DENSITY MATRIX
DERIVATION OF THE ATOMIC SUSCEPTIBILITY 155 8.2 THE SIGNIFICANCE OF (V)
162 8.3 SPONTANEOUS AND INDUCED TRANSITIONS 164 8.4 THE GAIN COEFFICIENT
169 8.5 THE EINSTEIN TREATMENT OF INDUCED AND SPONTANEOUS TRANSITIONS
171 8.6 HOMOGENEOUS AND INHOMOGENEOUS BROADENING 173 8.7 GAIN SATURATION
IN SYSTEMS WITH HOMOGENEOUS AND INHOMOGENEOUS BROADENING 176 CHAPTER 9
LASER OSCILLATION 183 9.0 INTRODUCTION 183 9.1 THE LASER OSCILLATION
CONDITION 183 9.2 LASER OSCILLATION*GENERAL TREATMENT 189 9.3 POWER
OUTPUT FROM LASERS 191 CHAPTER 10 SOME SPECIFIC LASER SYSTEMS 202 10.0
INTRODUCTION 202 XVI CONTENTS 10.1 PUMPING AND LASER EFFICIENCY 202 10.2
THE RUBY LASER 202 10.3 THE ND 3+ : YAG LASER 208 10.4 THE
NEODYMIUM-GIASS LASER 211 10.5 THE HE-NE LASER 214 10.6 THE CARBON
DIOXIDE LASER 216 10.7 ORGANIC-DYE LASERS 224 CHAPTER11 SEMICONDUCTOR
DIODE LASERS 232 11.0 INTRODUCTION 232 11.1 SOME SEMICONDUCTOR
BACKGROUND 232 11.2 OPTICALLY INDUCED BAND-TO-BAND TRANSITIONS IN
SEMICONDUCTORS 236 11.3 DIODE LASERS 243 11.4 GALNASP LASERS 251 11.5
SOME REAL LASERS 251 11.6 DIRECT-CURRENT MODULATION OF SEMICONDUCTOR
LASERS 255 CHAPTER 12 QUANTUM WELL LASERS 264 12.0 INTRODUCTION 264 12.1
THE QUANTUM MECHANICS 264 12.2 GAIN IN QUANTUM WELL LASERS 269 12.3 SOME
NUMERICAL CONSIDERATIONS 271 CHAPTER 13 THE FREE-ELECTRON LASER 277 13.0
INTRODUCTION 277 13.1 THE KINEMAUECS OF FREE-ELECTRON-PHOTON INTERACTION
277 13.2 THEORY OF OPTICAL GAIN IN FREE-ELECTRON LASERS 283 13.3 THE
PONDERMOTIVE POTENTIAL 289 CHAPTER 14 THE MODULATION OF OPTICAL
RADIATION 298 14.0 INTRODUCTION 298 14.1 THE ELECTROOPTIC EFFECT 298
14.2 ELECTROOPTIC RETARDATION 307 14.3 ELECTROOPTIC AMPLITUDE MODULATION
310 14.4 PHASE MODULATION OF LIGHT 313 14.5 TRANSVERSE ELECTROOPTIC
MODULATORS 315 CONTENTS XVII 14.6 HIGH-FREQUENCY MODULATION
CONSIDERATIONS 318 14.7 ELECTROOPTIC BEAM DEFLECTION 323 14.8 THE
PHOTOELASTIC EFFECT 325 14.9 BRAGG DIFFRACTION OF LIGHT BY ACOUSTIC
WAVES 327 14.10 DEFLECTION OF LIGHT BY SOUND 335 14.11 BRAGG SCATTERING
IN NATURALLY BIREFRINGENT CRYSTALS 337 CHAPTER 15 COHERENT INTERACTIONS
OF A RADIATION FIELD AND AN ATOMIC SYSTEM 342 15.0 INTRODUCTION 342 15.1
VECTOR REPRESENTATION OF THE INTERACTION OF A RADIATION FIELD WITH A
TWO-LEVEL ATOMIC SYSTEM 342 15.2 SUPERRADIANCE 352 15.3 PHOTON ECHOES
355 15.4 SELF-INDUCED TRANSPARENCY 357 CHAPTER16 INTRODUCTION TO
NONLINEAR OPTICS*SECOND-HARMONIC GENERATION 378 16.0 INTRODUCTION 378
16.1 THE NONLINEAR OPTICAL SUSCEPTIBILITY TENSOR 379 16.2 THE NONLINEAR
FIELD HAMILTONIAN 383 16.3 ON THE PHYSICAL ORIGINS OF THE NONLINEAR
OPTICAL COEFFICIENTS 384 16.4 THE ELECTROMAGNETIC FORMULATION OF THE
NONLINEAR INTERACTION 389 16.5 OPTICAL SECOND-HARMONIC GENERATION 392
16.6 SECOND-HARMONIC GENERATION WITH A DEPLETED INPUT 398 16.7
SECOND-HARMONIC GENERATION WITH GAUSSIAN BEAMS 400 16.8 INTERNAL
SECOND-HARMONIC GENERATION 402 CHAPTER 17 PARAMETRIC AMPLIFICATION,
OSCILLATION, AND FLUORESCENCE 407 17.0 INTRODUCTION AND LUMPED CIRCUIT
ANALOG 407 17.1 THE BASIC EQUATIONS OF PARAMETRIC AMPLIFICATION 409 17.2
PARAMETRIC OSCILLATION 411 17.3 POWER OUTPUT AND PUMP SATURATION IN
PARAMETRIC OSCILLATORS 418 17.4 FREQUENCY TURNING IN PARAMETRIC
OSCILLATION 419 17.5 QUANTUM MECHANICAL TREATMENT OF PARAMETRIC
INTERACTIONS 421 17.6 FREQUENCY UP-CONVERSION 425 17.7 SPONTANEOUS
PARAMETRIC FLUORESCENCE 430 XVUEI CONTENTS 17.8 BACKWARD PARAMETRIC
AMPLIFICATION AND OSCILLATION 435 17.9 SQUEEZED STATES OF THE
ELECTROMAGNETIC FIELD 437 CHAPTER 18 THIRD-ORDER OPTICAL
NONLINEARITIES*STIMULATED RAMAN AND BRILLOUIN SCATTERING 453 18.0
INTRODUCTION 453 18.1 THE NONLINEAR CONSTANTS 453 18.2 MOLECULAR RAMAN
SCATTERING 457 18.3 STIMULATED MOLECULAR RAMAN SCATTERING 465 18.4
ELECTROMAGNETIC TREATMENT OF STIMULATED RAMAN SCATTERING 469 18.5
ANTI-STOKES SCATTERING 473 18.6 STIMULATED BRILLOUIN SCATTERING 475 18.7
A CLASSICAL TREATMENT OF BRILLOUIN SCATTERING 475 18.8 SELF-FOCUSING OF
OPTICAL BEAMS 482 CHAPTER 19 PHASE-CONJUGATE-OPTICS AND PHOTOREFRACTIVE
BEAM COUPLING 495 19.0 INTRODUCTION 495 19.1 PROPAGATION THROUGH A
DISTORTING MEDIUM 495 19.2 IMAGE TRANSMISSION IN FIBERS 497 19.3 THEORY
OF PHASE CONJUGATION BY FOUR-WAVE MIXING 498 19.4 OPTICAL RESONATORS
WITH PHASE-CONJUGATE REFLECTORS 506 19.5 THE ABCD FORMALISM OF
PHASE-CONJUGATE OPTICAL RESONATORS 507 19.6 SOME PRACTICAL APPLICATIONS
OF PHASE CONJUGATION 510 19.7 OPTICAL PHASE CONJUGATION BY STIMULATED
NONLINEAR SCATTERING 513 19.8 BEAM COUPLING AND PHASE CONJUGATION BY THE
PHOTOREFRACTIVE EFFECT 516 CHAPTER 20 Q-SWITCHING AND MODE LOCKING OF
LASERS 534 20.0 INTRODUCTION 534 20.1 Q-SWITCHING 534 20.2 MODE LOCKING
IN INHOMOGENEOUSLY BROADENED LASER SYSTEMS 542 20.3 MODE LOCKING IN
HOMOGENEOUSLY BROADENED LASER SYSTEMS 553 20.4 RELAXATION OSCILLATION IN
LASERS 560 20.5 PASSIVE MODE LOCKING 565 CONTENTS XIX CHAPTER 21 NOISE
AND SPECTRA OF LASER AMPLIFIERS AND OSCILLATORS 570 21.0 INTRODUCTION
570 21.1 NOISE IN LASER AMPLIFIERS 570 21.2 SPONTANEOUS EMISSION NOISE
IN LASER OSCILLATORS 577 21.3 SOME MATHEMATICAL BACKGROUND 582 21.4 THE
LASER EQUATIONS 584 21.5 THE LASER SPECTRA 586 21.6 THE LASER SPECTRA
EXPERIMENTS 592 21.7 THE A PARAMETER 594 21.8 THE MEASUREMENT OF (AV)
LASER 596 CHAPTER 2 2 GUIDED WAVE OPTICS*PROPAGATION IN OPTICAL FIBERS
600 22.0 INTRODUCTION 600 22.1 THE WAVEGUIDE MODES 600 22.2 MODE
CHARACTERISTICS OF THE PLANAR WAVEGUIDE 603 22.3 COUPLING BETWEEN GUIDED
MODES 606 22.4 THE PERIODIC WAVEGUIDE*DISTRIBUTED FEEDBACK LASERS 608
22.5 THE COUPLED-MODE SOLUTIONS 611 22.6 THE DISTRIBUTED FEEDBACK LASER
615 22.7 ELECTROOPTIC MODULATION AND MODE COUPLING IN DIELECTRIC
WAVEGUIDES 623 22.8 DIRECTIONAL COUPLING*SUPERMODES 627 22.9 THE
EIGENMODES OF A COUPLED WAVEGUIDE SYSTEM ( SUPERMODES ) 631 22.10
PROPAGATION IN OPTICAL FIBERS 640 APPENDIX 1 THE KRAMERS*KRONIG
RELATIONS 651 APPENDIX 2 SOLID ANGLE ASSOCIATED WITH A BLACKBODY MODE
653 APPENDIX 3 THE SPONTANEOUS EMISSION LIFETIME FOR A
VIBRATIONAL-ROTATIONAL TRANSITION IN A LINEAR MOLECULE 655 APPENDIX 4
QUANTUM MECHANICAL DERIVATION OF NONLINEAR OPTICAL CONSTANTS 658 XX
CONTENTS APPENDIX 5 THE INTERACTION OF AN ELECTRON AND AN
ELECTROMAGNETIC FIELD 663 APPENDIX 6 THE DERIVATION OF THE SPONTANEOUS
EMISSION LANGEVIN FLUCTUATION POWER 666 INDEX 669
|
any_adam_object | 1 |
author | Yariv, Amnon |
author_facet | Yariv, Amnon |
author_role | aut |
author_sort | Yariv, Amnon |
author_variant | a y ay |
building | Verbundindex |
bvnumber | BV002815524 |
classification_rvk | UH 5600 |
classification_tum | PHY 370f PHY 380f |
ctrlnum | (OCoLC)263151147 (DE-599)BVBBV002815524 |
discipline | Physik |
edition | 3. ed. |
format | Book |
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genre | 1\p (DE-588)4151278-9 Einführung gnd-content |
genre_facet | Einführung |
id | DE-604.BV002815524 |
illustrated | Illustrated |
indexdate | 2024-07-09T15:49:26Z |
institution | BVB |
isbn | 0471609978 0471617717 9780471609971 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-001772572 |
oclc_num | 263151147 |
open_access_boolean | |
owner | DE-91 DE-BY-TUM DE-91G DE-BY-TUM DE-384 DE-19 DE-BY-UBM DE-703 DE-355 DE-BY-UBR DE-20 DE-29T DE-1050 DE-83 DE-11 DE-188 |
owner_facet | DE-91 DE-BY-TUM DE-91G DE-BY-TUM DE-384 DE-19 DE-BY-UBM DE-703 DE-355 DE-BY-UBR DE-20 DE-29T DE-1050 DE-83 DE-11 DE-188 |
physical | XX, 676 S. graph. Darst. |
publishDate | 1989 |
publishDateSearch | 1989 |
publishDateSort | 1989 |
publisher | Wiley |
record_format | marc |
spelling | Yariv, Amnon Verfasser aut Quantum electronics Amnon Yariv, California Institute of Technology 3. ed. New York Wiley 1989 XX, 676 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Quantenoptik (DE-588)4047990-0 gnd rswk-swf Festkörper (DE-588)4016918-2 gnd rswk-swf Laser (DE-588)4034610-9 gnd rswk-swf Quantenelektronik (DE-588)4137298-0 gnd rswk-swf Theorie (DE-588)4059787-8 gnd rswk-swf Nichtlineare Optik (DE-588)4042096-6 gnd rswk-swf 1\p (DE-588)4151278-9 Einführung gnd-content Quantenelektronik (DE-588)4137298-0 s DE-604 Quantenoptik (DE-588)4047990-0 s Nichtlineare Optik (DE-588)4042096-6 s Festkörper (DE-588)4016918-2 s Laser (DE-588)4034610-9 s Theorie (DE-588)4059787-8 s http://www3.ub.tu-berlin.de/ihv/000136061.pdf Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001772572&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Yariv, Amnon Quantum electronics Quantenoptik (DE-588)4047990-0 gnd Festkörper (DE-588)4016918-2 gnd Laser (DE-588)4034610-9 gnd Quantenelektronik (DE-588)4137298-0 gnd Theorie (DE-588)4059787-8 gnd Nichtlineare Optik (DE-588)4042096-6 gnd |
subject_GND | (DE-588)4047990-0 (DE-588)4016918-2 (DE-588)4034610-9 (DE-588)4137298-0 (DE-588)4059787-8 (DE-588)4042096-6 (DE-588)4151278-9 |
title | Quantum electronics |
title_auth | Quantum electronics |
title_exact_search | Quantum electronics |
title_full | Quantum electronics Amnon Yariv, California Institute of Technology |
title_fullStr | Quantum electronics Amnon Yariv, California Institute of Technology |
title_full_unstemmed | Quantum electronics Amnon Yariv, California Institute of Technology |
title_short | Quantum electronics |
title_sort | quantum electronics |
topic | Quantenoptik (DE-588)4047990-0 gnd Festkörper (DE-588)4016918-2 gnd Laser (DE-588)4034610-9 gnd Quantenelektronik (DE-588)4137298-0 gnd Theorie (DE-588)4059787-8 gnd Nichtlineare Optik (DE-588)4042096-6 gnd |
topic_facet | Quantenoptik Festkörper Laser Quantenelektronik Theorie Nichtlineare Optik Einführung |
url | http://www3.ub.tu-berlin.de/ihv/000136061.pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001772572&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT yarivamnon quantumelectronics |
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