Fiber lasers:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2012
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XIV, 280 S. Ill., graph. Darst. 240 mm x 170 mm |
ISBN: | 9783527411146 |
Internformat
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Datensatz im Suchindex
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adam_text |
Titel: Fiber lasers
Autor: Okhotnikov, Oleg G
Jahr: 2012
Contents
Preface XI
List of Contributors XIII
1 Introduction 2
Oleg G. Okhotnikov
References 4
2 High-Power Fiber Lasers and Amplifiers: Fundamentals and Enabling
Technologies to Enter the Upper Limits 7
Thomas Schreiber, Ramona Eberhardt, Jens Limpert, and
Andreas Tunnermann
2.1 Introduction 7
2.2 High-Power Fiber Design 8
2.2.1 Double Clad Fiber Design 8
2.2.2 Large Core Design in Special Fibers 2 2
2.2.2.1 Motivation 11
2.2.2.2 Core Design in Photonic Crystal Fibers 22
2.2.3 Pump Core Design 25
2.2.4 Polarization Control 26
2.3 Theoretical Description and Nonlinear Effects in Laser Fibers 19
2.3.1 Propagation and Rate Equation Description 29
2.3.2 Thermo-optical Effects 22
2.3.3 Inelastic Scattering 25
2.3.4 Self-Phase Modulation 27
2.3.5 Mode Instabilities 27
2.4 Fiber Components for High-Power Fiber Lasers 31
2.4.1 Fiber Preparation 32
2.4.2 Endcaps 33
2.4.3 Pump Coupler 34
2.4.4 Mode-Stripper 37
2.5 High-Power Experiments 37
2.5.1 Narrow Linewidth CW Amplification 37
2.5.1.1 Narrow Linewidth Amplification of a Broadened Single-Frequency
Diode Laser 38
VII Contents
2.5.1.2 Narrow Linewidth Amplified Spontaneous Emission Source 39
2.5.1.3 SBS Suppression Capabilities of the Narrow Linewidth
ASE Source 42
2.5.2 Tandem Pumping 43
2.5.3 Beam Combining Methods 47
2.5.3.1 High Average Power CW Spectral Beam Combining 49
2.5.3.2 Pulsed SBC 52
2.6 Summary 55
References 55
3 Supercontinuum Sources Based on Photonic Crystal Fiber 63
Sebastian Stark, John C. Travers, Nicolas Y. Joly, and Philip St. J. Russell
3.1 Introduction and Brief History 63
3.1.1 Outline of this Chapter 64
3.2 Photonic Crystal Fibers and Tapers 64
3.2.1 Calculating PCF Properties 65
3.2.2 Nonlinearity in PCF 66
3.2.3 Dispersion in PCF 69
3.3 Modeling Nonlinear Pulse Propagation in Optical Fiber 71
3.3.1 Unidirectional Field Equation 71
3.3.2 Envelope Equations 73
3.4 Ultrafast Pumped Supercontinuum Sources 74
3.4.1 Regimes of Supercontinuum Generation 74
3.4.2 Initial Dynamics and Solitons 77
3.4.3 Dispersive-Wave Generation 78
3.4.4 Intrapulse Raman Scattering 79
3.4.5 Tailoring the Shape of the SC - Ways of Shaping 81
3.4.5.1 Power Dependence 81
3.4.5.2 Wavelength Tuning 82
3.4.6 Multiple ZDWs 82
3.4.6.1 Three ZDWs 84
3.4.7 Taper Transitions 85
3.4.7.1 Soliton Dynamics in Axially Varying Fiber 86
3.4.7.2 Intrapulse FWM 86
3.4.7.3 Soliton Blue Shift 87
3.4.8 Extreme SCG 88
3.5 Conclusion 89
References 89
4 Dissipative Soliton Fiber Lasers 97
William H. Renninger and Frank W. Wise
4.1 Introduction 97
4.2 Theory. Analytic Approach 99
4.2.1 Theory 99
4.2.2 Experimental Results 103
4.3 Theory: Simulations 105
4.3.1 Temporal Evolution 105
4.3.2 Variation of Laser Parameters 107
4.3.2.1 Nonlinear Phase Shifts 107
4.3.2.2 Spectral Filter Bandwidth 109
4.3.2.3 Group-Velocity Dispersion 109
4.3.2.4 Summary of the Effects of Laser Parameters 109
4.3.2.5 Design Guidelines 110
4.3.3 Experimental Confirmation 112
4.4 Physical Limits 114
4.4.1 Area Theorem 114
4.4.2 Pulse Energy 117
4.4.3 Pulse Duration 119
4.5 Practical Extensions 120
4.5.1 Core-Size Scaling 120
4.5.1.1 Double-Clad Fiber 121
4.5.1.2 Photonic Crystal Fiber 122
4.5.1.3 Chirally-Coupled Core Fiber 124
4.5.2 Environmental Stability 125
4.6 Giant-Chirp Oscillators 127
4.7 Summary 130
References 130
5 Modeling and Technologies of Ultrafast Fiber Lasers 135
Brandon G. Bale, Oleg G. Okhitnikov, and Sergei K. Turitsyn
5.1 Overview of Short Pulse Fiber Lasers 135
5.1.1 Introduction 135
5.1.2 Gain Fiber 136
5.1.3 All-Fiber Methods for Dispersion Control 137
5.1.4 Advanced Saturable Absorbers 139
5.1.4.1 Quantum-Confined Semiconductor Absorbers 139
5.1.4.2 Carbon-Based Absorbers 140
5.2 Modeling of Ultrafast Fiber Lasers 142
5.2.1 Numerical Modeling of Ultrashort Fiber Lasers 143
5.2.2 Classification of Pulsed Fiber Lasers 146
5.2.3 Simplified Modeling Approach 249
5.2.4 Numerical Optimization of Laser Systems 254
5.3 Implementation and Control of Advanced Components 157
5.3.1 SESAM Engineering and Control 157
5.3.2 Example of Dispersion Management in Mode-Locked Fiber Lasers
Based on Chirped Fiber Bragg Gratings 262
5.3.2.1 Dispersion Management Using CFBG in a Ytterbium-Doped
Mode-Locked Fiber Laser 162
5.3.2.2 Dispersion Management Using CFBG in a Tnulium/Holmium-Doped
Mode-Locked Fiber Laser 163
I
5.3.3 Examples of Dispersion Management in Mode-Locked Fiber
Lasers Based on Photonic Bandgap Fibers 164
5.4 Conclusions and Future Outlook 168
References 169
6 Tapered Fiber Lasers and Amplifiers 177
Valety Filippov, Juho Kerttula, and Oleg G. Okhotnikov
6.1 I ntroduction 177
6.2 Theoretical Model and Experimental Results 178
6.2.1 Ray Optic Model of an Active Tapered Fiber 178
6.2.2 Parameters of Active Tapered Fibers and Their Optimization 183
6.2.2.1 Tapering Ratio 184
6.2.2.2 Longitudinal Shape of T-DCF Profile 187
6.2.2.3 Shape of the Cladding, Core-Cladding Ratio, and Dopant
Concentration Profile 191
6.2.3 Comparison of Lasers with Regular and Tapered Fibers:
Theoretical Model 192
6.2.3.1 Slope Efficiency, Pump Absorption, and Power Distribution 192
6.2.3.2 Contrast and Beam Quality 198
6.2.3.3 Launching Efficiency 203
6.2.4 Experiment 204
6.2.4.1 Pump Launching and Absorption 205
6.2.4.2 Pump Conversion Efficiency 206
6.2.4.3 Self-Pulsing Threshold 207
6.2.4.4 Mode-Coupling Measurements 220
6.2.4.5 Beam Quality 213
6.3 Lasers and Amplifiers with Active Tapered Fibers 214
6.3.1 High-Power Fiber Laser 214
6.3.2 Actively Q-Switched Tapered Fiber Laser 217
6.3.3 High Power, High Gain CW Amplifier 222
6.3.4 Narrow Bandwidth Amplifier 226
6.3.5 Short Pulse Amplifier 228
6.4 Summary 228
References 229
7 Fiber Lasers that Bridge the Shortwave to Midwave Regions of the
Infrared Spectrum 233
Stuart D. Jackson and David G. Lancaster
7.1 Introduction 233
7.2 Survey of the Power and Efficiency of Long-Wavelength
Fiber Lasers 235
7.3 Shortwave Infrared Fiber Lasers Employing Silicate Glass 237
7.3.1 Er3"-Doped Silicate Glass Fiber Lasers 238
7.3.2 Tm3"-Doped Silicate Glass Fiber Lasers 239
7.3.3 Ho3+-Doped Silicate Glass Fiber Lasers 242
7.4 Infrared Fiber Fabrication 243
7.5 Shortwave and Midwave Infrared Fiber Lasers Employing
Fluoride Glass 245
7.5.1 Shortwave Infrared Fiber Lasers Employing Fluoride Glass 246
7.5.2 Er3+-Doped Fluoride Glass Fiber Lasers 247
7.5.3 Ho3+-Doped Fluoride Glass Fiber Lasers 250
7.5.4 Dy3+-Doped Fluoride Glass Fiber Lasers 251
7.6 Exotic Glasses for Fiber Lasers 252
7.6.1 Chalcogenide Fiber Lasers: Not There Yet 254
7.6.2 Germanate Fiber Lasers 255
7.6.3 Tellurite Fiber Lasers 257
7.7 Conclusions 259
References 260
8 Outlook 269
Oleg G. Okhotnikov
Index 271 |
any_adam_object | 1 |
author2 | Okhotnikov, Oleg G. |
author2_role | edt |
author2_variant | o g o og ogo |
author_GND | (DE-588)141187476 |
author_facet | Okhotnikov, Oleg G. |
building | Verbundindex |
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dewey-ones | 530 - Physics 621 - Applied physics |
dewey-raw | 530 621.3661 |
dewey-search | 530 621.3661 |
dewey-sort | 3530 |
dewey-tens | 530 - Physics 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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spelling | Fiber lasers ed. by Oleg G. Okhotnikov Weinheim Wiley-VCH 2012 XIV, 280 S. Ill., graph. Darst. 240 mm x 170 mm txt rdacontent n rdamedia nc rdacarrier Faserlaser (DE-588)4337333-1 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Faserlaser (DE-588)4337333-1 s DE-604 Okhotnikov, Oleg G. (DE-588)141187476 edt X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3965893&prov=M&dok%5Fvar=1&dok%5Fext=htm Inhaltstext HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025219275&sequence=000004&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Fiber lasers Faserlaser (DE-588)4337333-1 gnd |
subject_GND | (DE-588)4337333-1 (DE-588)4143413-4 |
title | Fiber lasers |
title_auth | Fiber lasers |
title_exact_search | Fiber lasers |
title_full | Fiber lasers ed. by Oleg G. Okhotnikov |
title_fullStr | Fiber lasers ed. by Oleg G. Okhotnikov |
title_full_unstemmed | Fiber lasers ed. by Oleg G. Okhotnikov |
title_short | Fiber lasers |
title_sort | fiber lasers |
topic | Faserlaser (DE-588)4337333-1 gnd |
topic_facet | Faserlaser Aufsatzsammlung |
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