Ultrafast lasers based on quantum-dot structures: physics and devices
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim, Bergstr
Wiley-VCH
2011
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Ausgabe: | 1., Auflage |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | ca. 250 S. 70 schw.-w. Ill. 740 mm x 170 mm |
ISBN: | 9783527409280 |
Internformat
MARC
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Datensatz im Suchindex
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adam_text |
IMAGE 1
CONTENTS
INTRODUCTION IX ACKNOWLEDGMENTS XI
1 SEMICONDUCTOR QUANTUM DOTS FOR ULTRAFAST OPTOELECTRONICS 1 1.1 THE
ROLE OF DIMENSIONALITY IN SEMICONDUCTOR MATERIALS 1 1.2 MATERIAL SYSTEMS
USED 4
1.2.1 III-V EPITAXIALLY GROWN QUANTUM DOTS 4 1.2.2 QD-DOPED GLASSES 6
1.2.3 QUANTUM DASHES 6
1.3 QUANTUM DOTS: DISTINCTIVE PROPERTIES FOR ULTRAFAST DEVICES 7 1.3.1
INHOMOGENEOUS BROADENING 7 1.3.2 ULTRAFAST CARRIER DYNAMICS 9
2 FOUNDATIONS OF QUANTUM DOT THEORY 11 2.1 ENERGY STRUCTURE AND MATRIX
ELEMENTS 11 2.2 THEORETICAL APPROACHES TO CALCULATING ABSORPTION AND
GAIN IN QUANTUM DOTS 14
2.3 KINETIC THEORY OF QUANTUM DOTS 22 2.4 LIGHT-MATTER INTERACTIONS IN
QUANTUM DOTS 37 2.5 THE NONLINEARITY COEFFICIENT 51
3 QUANTUM DOTS IN AMPLIFIERS OF ULTRASHORT PULSES 55 3.1 OPTICAL
AMPLIFIERS FOR HIGH-SPEED APPLICATIONS: REQUIREMENTS AND PROBLEMS 55
3.2 QUANTUM DOT OPTICAL AMPLIFIERS: SHORT-PULSE OPERATING REGIME 62 3.3
QUANTUM DOT OPTICAL AMPLIFIERS AT HIGH BIT RATES: LOW DISTORTIONS AND
PATTERNING-FREE OPERATION 63 3.4 NONLINEAR OPERATION AND LIMITING
FUNCTION USING QD OPTICAL
AMPLIFIERS 76
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1006150137
DIGITALISIERT DURCH
IMAGE 2
VI CONTENTS
4 QUANTUM DOT SATURABLE ABSORBERS 77
4.1 FOUNDATIONS OF SATURABLE ABSORBER OPERATION 77 4.2 THE GENERAL
PHYSICAL PRINCIPLES OF SATURABLE ABSORPTION IN SEMICONDUCTORS 80 4.2A
PHYSICAL PROCESSES IN A SATURABLE ABSORBER 80 4.2.2 GEOMETRY OF
SATURABLE ABSORBER SESAM VERSUS WAVEGUIDE
ABSORBER - THE CAVITY ENHANCEMENT OF SATURABLE ABSORPTION AND THE
STANDING WAVE FACTOR IN SESAMS 84 4.3 THE MAIN SPECIAL FEATURES OF A
QUANTUM DOT SATURABLE ABSORBER OPERATION 87
4.3.1 BANDWIDTH OF QD SAS 88 4.3.2 DYNAMICS OF CARRIER RELAXATION:
ULTRAFAST RECOVERY OF ABSORPTION 88 4.3.3 SATURATION FLUENCE 94
5 MONOLITHIC QUANTUM DOT MODE-LOCKED LASERS 99 5.1 INTRODUCTION TO
SEMICONDUCTOR MODE-LOCKED LASERS 99 5.1.1 PLACE OF SEMICONDUCTOR
MODE-LOCKED LASERS AMONG OTHER ULTRASHORT PULSE SOURCES 99
5.1.2 MODE-LOCKING TECHNIQUES IN LASER DIODES: THE MAIN PRINCIPLES 100
5.1.3 PASSIVE MODE LOCKING: THE QUALITATIVE PICTURE, PHYSICS, AND
DEVICES 101 5.2 THEORETICAL MODELS OF MODE LOCKING IN SEMICONDUCTOR
LASERS 103 5.2.1 SMALL-SIGNAL TIME DOMAIN MODELS: SELF-CONSISTENT PULSE
PROFILE 103 5.2.2 LARGE-SIGNAL TIME DOMAIN APPROACH: DELAY DIFFERENTIAL
EQUATIONS
MODEL 109
5.2.3 TRAVELING WAVE MODELS 120 5.2.4 FREQUENCY AND TIME-FREQUENCY
TREATMENT OF MODE LOCKING: DYNAMIC MODAL ANALYSIS 125 5.3 MAIN
PREDICTIONS OF GENERIC MODE-LOCKED LASER MODELS
AND THEIR IMPLICATION FOR QUANTUM DOT LASERS 126 5.3.1 LASER PERFORMANCE
DEPENDING ON THE OPERATING POINT 126 5.3.2 MAIN PARAMETERS THAT AFFECT
MODE-LOCKED LASER BEHAVIOR 129 5.4 SPECIFIC FEATURES OF QUANTUM DOT
MODE-LOCKED LASERS IN THEORY
AND MODELING 131
5.4.1 DELAY DIFFERENTIAL EQUATION MODEL FOR QUANTUM DOT MODE-LOCKED
LASERS 132 5.4.2 TRAVELING WAVE MODELING OF QUANTUM DOT MODE-LOCKED
LASERS: EFFECTS OF MULTIPLE LEVELS AND INHOMOGENEOUS BROADENING 141
5.4.3 MODAL ANALYSIS FOR QD MODE-LOCKED LASERS 153 5.5 ADVANTAGES OF
QUANTUM DOT MATERIALS IN MODE-LOCKED LASER
DIODES 154
5.5.1 ADVANTAGES OF QD SATURABLE ABSORBERS 154 5.5.2 BROAD GAIN
BANDWIDTH 154 5.5.3 LOW THRESHOLD CURRENT 155 5.5.4 LOW TEMPERATURE
SENSITIVITY 155
IMAGE 3
CONTENTS VII
5.5.5 SUPPRESSED CARRIER DIFFUSION 156
5.5.6 LOWER LEVEL OF AMPLIFIED SPONTANEOUS EMISSION 157 5.5.7 IINEWIDTH
ENHANCEMENT FACTOR 157 5.6 ULTRASHORT PULSE GENERATION: ACHIEVEMENTS AND
STRATEGIES 158
5.6.1 MONOLITHIC MODE-LOCKED QUANTUM DOT LASERS 158 5.6.2 CHIRP
MEASUREMENT AND PULSE COMPRESSION 161 5.6.3 TOWARD HIGHER POWER: TAPERED
LASERS 164 5.6.4 TOWARD HIGHER REPETITION RATES 165
5.6.5 EXTERNAL CAVITY QD MODE-LOCKED LASERS 166 5.7 NOISE
CHARACTERISTICS OF QD MODE-LOCKED LASERS 167 5.7.1 TIMING JITTER 167
5.7.2 PULSE REPETITION RATE STABILITY AND RESILIENCE TO OPTICAL FEEDBACK
170 5.7.3 PERFORMANCE UNDER OPTICAL INJECTION 172 5.8 PERFORMANCE OF QD
MODE-LOCKED LASERS AT ELEVATED TEMPERATURE 174
5.8.1 STABLE MODE LOCKING AT ELEVATED TEMPERATURE 174 5.8.2 PULSE
DURATION TRENDS AT HIGHER TEMPERATURES 175 5.8.3 THE USE OF P-DOPING IN
QD MODE-LOCKED LASERS 176 5.9 EXPLOITING DIFFERENT TRANSITIONS FOR PULSE
GENERATION 176
5.9.1 MODE LOCKING VIA GROUND AND EXCITED STATES 176 5.9.2 THE
EXCITED-STATE TRANSITION AS TOOL FOR NOVEL MODE-LOCKING REGIMES 179 5.10
SUMMARY AND OUTLOOK 180 5.10.1 QD MODE-LOCKED LASER DIODES: NEW
FUNCTIONALITIES 180 5.10.2 FUTURE DIRECTIONS 181
6 ULTRASHORT PULSE SOLID STATE LASERS BASED ON QUANTUM DOT SATURABLE
ABSORBERS 183 6.1 A BRIEF HISTORICAL OVERVIEW OF ULTRASHORT-PULSE
GENERATION 183 6.2 MACROSCOPIC PARAMETERS OF SATURABLE ABSORBERS 184
6.3 QD SESAMS FOR EFFICIENT PASSIVE MODE LOCKING OF SOLID-STATE LASERS
EMITTED AROUND 1 URN 187 6.4 QD SESAMS FOR EFFICIENT PASSIVE MODE
LOCKING OF SOLID-STATE LASERS EMITTED AROUND 1.3 URN 193 6.5 QD SESAMS
FOR THE PASSIVE MODE LOCKING OF FIBER LASERS 199 6.6 MODE-LOCKED
SEMICONDUCTOR DISK LASERS INCORPORATING
QD SESAMS 201
6.7 OPTICALLY PUMPED QUANTUM DOT VECSELS 204
7 SATURABLE ABSORBERS BASED ON QD-DOPED CLASSES 207 7.1 II-VI
SEMICONDUCTOR NANOCRYSTALS IN GLASS 207 7.2 IV-VI SEMICONDUCTOR QD-DOPED
GLASSES FOR ULTRASHORT-PULSE GENERATION FROM SOLID-STATE LASERS 209
7.3 QD-DOPED GLASS SATURABLE ABSORBERS FOR PASSIVE MODE LOCKING AROUND
1.3 URN 210
IMAGE 4
VIII CONTENTS
7.4 CNYAG LASER PASSIVELY MODE LOCKED WITH A QD-DOPED GLASS
SATURABLE ABSORBER 212 7.5 PBS QD-DOPED GLASS SATURABLE ABSORBERS FOR
PASSIVE MODE LOCKING AROUND 1 UM AND THEIR NONLINEAR CHARACTERISTICS 214
8 EMERGING APPLICATIONS OF ULTRAFAST QUANTUM DOT LASERS 217 8.1 OPTICAL
COMMUNICATIONS 217 8.2 DATACOMS 219
8.3 BIOPHOTONICS AND MEDICAL APPLICATIONS 220
8.4 OUTLOOK 220
REFERENCES 223
INDEX 241 |
any_adam_object | 1 |
author | Rafailov, Edik U. |
author_GND | (DE-588)1047467496 |
author_facet | Rafailov, Edik U. |
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author_sort | Rafailov, Edik U. |
author_variant | e u r eu eur |
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bvnumber | BV037236246 |
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discipline | Physik |
edition | 1., Auflage |
format | Book |
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institution | BVB |
isbn | 9783527409280 |
language | English |
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spelling | Rafailov, Edik U. Verfasser (DE-588)1047467496 aut Ultrafast lasers based on quantum-dot structures physics and devices Edik U. Rafailov ; Maria Ana Cataluna ; Eugene A. Avrutin 1., Auflage Weinheim, Bergstr Wiley-VCH 2011 ca. 250 S. 70 schw.-w. Ill. 740 mm x 170 mm txt rdacontent n rdamedia nc rdacarrier Ultraschneller Prozess (DE-588)4186732-4 gnd rswk-swf Quantenpunktlaser (DE-588)4767124-5 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Quantenpunktlaser (DE-588)4767124-5 s Ultraschneller Prozess (DE-588)4186732-4 s DE-604 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3527477&prov=M&dok%5Fvar=1&dok%5Fext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=021149830&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Rafailov, Edik U. Ultrafast lasers based on quantum-dot structures physics and devices Ultraschneller Prozess (DE-588)4186732-4 gnd Quantenpunktlaser (DE-588)4767124-5 gnd |
subject_GND | (DE-588)4186732-4 (DE-588)4767124-5 (DE-588)4143413-4 |
title | Ultrafast lasers based on quantum-dot structures physics and devices |
title_auth | Ultrafast lasers based on quantum-dot structures physics and devices |
title_exact_search | Ultrafast lasers based on quantum-dot structures physics and devices |
title_full | Ultrafast lasers based on quantum-dot structures physics and devices Edik U. Rafailov ; Maria Ana Cataluna ; Eugene A. Avrutin |
title_fullStr | Ultrafast lasers based on quantum-dot structures physics and devices Edik U. Rafailov ; Maria Ana Cataluna ; Eugene A. Avrutin |
title_full_unstemmed | Ultrafast lasers based on quantum-dot structures physics and devices Edik U. Rafailov ; Maria Ana Cataluna ; Eugene A. Avrutin |
title_short | Ultrafast lasers based on quantum-dot structures |
title_sort | ultrafast lasers based on quantum dot structures physics and devices |
title_sub | physics and devices |
topic | Ultraschneller Prozess (DE-588)4186732-4 gnd Quantenpunktlaser (DE-588)4767124-5 gnd |
topic_facet | Ultraschneller Prozess Quantenpunktlaser Aufsatzsammlung |
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