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Titlebook: Dissipative Solitons; Nail Akhmediev,Adrian Ankiewicz Book 2005 Springer-Verlag Berlin Heidelberg 2005 Absorption.Dissipative systems.Lase

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https://doi.org/10.1007/978-94-015-9421-9linear coupling in conjunction with the cubic Kerr nonlinearity and chromatic dispersion leads to the formation of attracting soliton states, i.e. dissipative solitons. A review of each model is given with an evaluation of its merit and mode-locking features.
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https://doi.org/10.1007/978-94-015-9676-3systems. In many cases, it is advantageous to interpret the overall pattern under consideration in terms of a superposition of certain spatially well-localized elementary patterns that we may refer to as “particles”. In the simplest case, all these particles are of the same kind and the complex beha
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The Convergence of Scientific Knowledgecomplex discrete diffraction, as well as Bloch oscillations, arising from the linear properties of such systems. Subsequently, using a generic cubic-quintic nonlinearity, we identify self-localized dissipative discrete soliton solutions, and study their characteristics.
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The Convergence of Scientific Knowledgeoblem closer to the experimental situation. Dissipation can play either a principal role, i.e. determining the phenomenon itself (so that the latter disappears when dissipation is switched off), or a secondary role, i.e. affecting physical processes only by causing relatively small energy losses (so
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