Dissipative Solitons / Edition 1

Dissipative Solitons / Edition 1

ISBN-10:
3540233733
ISBN-13:
9783540233732
Pub. Date:
06/22/2005
Publisher:
Springer Berlin Heidelberg
ISBN-10:
3540233733
ISBN-13:
9783540233732
Pub. Date:
06/22/2005
Publisher:
Springer Berlin Heidelberg
Dissipative Solitons / Edition 1

Dissipative Solitons / Edition 1

Hardcover

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Overview

This volume is devoted to the exciting topic of dissipative solitons, i.e. pulses or spatially localised waves in systems exhibiting gain and loss. Examples are laser systems, nonlinear resonators and optical transmission lines. The physical principles and mathematical concepts are explained in a clear and concise way, suitable for students and young researchers. The similarities and differences in the notion of a soliton between dissipative systems and Hamiltonian and integrable systems are discussed, and many examples are given. The contributions are written by the world's leading experts in the field, making it a unique exposition of this emerging topic.


Product Details

ISBN-13: 9783540233732
Publisher: Springer Berlin Heidelberg
Publication date: 06/22/2005
Series: Lecture Notes in Physics , #661
Edition description: 2005
Pages: 448
Product dimensions: 6.10(w) x 9.25(h) x 0.05(d)

Table of Contents

Introduction.- Dissipative Solitons of the Swift-Hohenberg Equation.- Dissipative Magneto-Optic Solitons.- Dissipative Solitons in Semiconductor Optical Amplifiers.- Dissipative Solitons in Pattern-Forming Nonlinear Optical Systems: Cavity Solitons and Feedback Solitons.- Solitons in Laser Schemes with Saturable Absorption.- Spatial Resonator Solitons.- Dissipative Temporal Solitons.- Soliton Dynamics in Modelocked Lasers.- Temporal Multi-Soliton Complexes Generated by Passively Modelocked Lasers.- Dissipative Solitons in Reaction-Diffusion Systems.- Discrete Ginzburg-Landau Solitons.- Discrete Dissipative Solitons.- Nonlinear Schroedinger Equation with Dissipation: Two Models for Bose-Einstein Condensates.- Solitary Waves of Nonlinear Equations.- Stability Analysis of Pulses via the Evans Function: Dissipative Systems.- Bifurcations and Strongly Amplitude-Modulated Pulses of the Complex Ginzburg-Landau Equation.
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