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| Preface 1 Introduction 1.1 Historical Perspective 1.2 Fiber Characteristics 1.3 Fiber Nonlinearities 1.4 Overview Problems References 2 Pulse Propagation in Fibers 2.1 Maxwell‘s Equations 2.2 Fiber Modes 2.3 Pulse-Propagation Equation 2.4 Numerical Methods Problems References 3 Group-Velocity Dispersion 3.1 Different Propagation Regimes 3.2 Dispersion-Induced Pulse Broadening 3.3 Third-Order Dispersion 3.4 Dispersion Management Problems References 4 Self-Phase Modulation 4.1 SPM-Induced Spectral Broadening 4.2 Effect of Group-Velocity Dispersion 4.3 Higher-Order Nonlinear Effects Problems References 5 Optical Solitons 5.1 Modulation Instability 5.2 Fiber Solitons 5.3 Other Typescof Solitons 5.4 Perturbation of Solitons 5.5 Higher-Order Effects Problems References 6 Polarization Effects 6.1 Nonlineaz Birefringence 6.2 Nonlinear Phase Shift 6.3 Evolution of Polarization State 6.4 Vector Modulation Instability 6.5 Birefringence and Solitons 6.6 Random Birefringence Problems References 7 Cross-Phase Modulation 7.1 XPM-Induced Nonlinear Coupling 7.2 XPM-Induced Modulation Instability 7.3 XPM-Paired Solitons 7.4 Spectral and Temporal Effects 7.5 Applications of XPM Problems References 8 Stimulated Raman Scattering 8.1 Basi Concepts 8.2 Quasi-Continuous SRS 8.3 SRS with Short Pump Pulses 8.4 Soliton Effects 8.5 Effect of Four-Wave Mixing Problems References 9 Stimulated Brillouin Scattering 9.1 Basi Concepts 9.2 Quasi-CW SBS 9.3 Dynami Aspects 9.4 Brillouin Fiber Lasers 9.5 SBS Applications Problems References 10 Parametri Processes 10.1 Origin of Four-Wave Mixing 10.2 Theory of Four-Wave Mixing 10.3 Phase-Matching Techniques 10.4 Parametri Amplification 10.5 FWM Applications 10.6 Second-Harmoni Generation Problems References Appendix A DecibelcUnits Appendix B Nonlinear Refractive Index Appendix C Acronyms Index |
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