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Solitons
  • Language: en
  • Pages: 403

Solitons

With contributions by numerous experts

The Legacy of the Inverse Scattering Transform in Applied Mathematics
  • Language: en
  • Pages: 346

The Legacy of the Inverse Scattering Transform in Applied Mathematics

Swift progress and new applications characterize the area of solitons and the inverse scattering transform. There are rapid developments in current nonlinear optical technology: Larger intensities are more available; pulse widths are smaller; relaxation times and damping rates are less significant. In keeping with these advancements, exactly integrable soliton equations, such as $3$-wave resonant interactions and second harmonic generation, are becoming more and more relevant inexperimental applications. Techniques are now being developed for using these interactions to frequency convert high intensity sources into frequency regimes where there are no lasers. Other experiments involve using ...

Integrable Hamiltonian Hierarchies
  • Language: en
  • Pages: 643

Integrable Hamiltonian Hierarchies

  • Type: Book
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  • Published: 2008-12-02
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  • Publisher: Springer

This book presents a detailed derivation of the spectral properties of the Recursion Operators allowing one to derive all the fundamental properties of the soliton equations and to study their hierarchies.

Emerging Frontiers in Nonlinear Science
  • Language: en
  • Pages: 389

Emerging Frontiers in Nonlinear Science

This book explores the impact of nonlinearity on a broad range of areas, including time-honored fields such as biology, geometry, and topology, but also modern ones such as quantum mechanics, networks, metamaterials and artificial intelligence. The concept of nonlinearity is a universal feature in mathematics, physics, chemistry and biology, and is used to characterize systems whose behavior does not amount to a superposition of simple building blocks, but rather features complex and often chaotic patterns and phenomena. Each chapter of the book features a synopsis that not only recaps the recent progress in each field but also charts the challenges that lie ahead. This interdisciplinary book presents contributions from a diverse group of experts from various fields to provide an overview of each field’s past, present and future. It will appeal to both beginners and seasoned researchers in nonlinear science, numerous areas of physics (optics, quantum physics, biophysics), and applied mathematics (ODEs, PDEs, dynamical systems, machine learning) as well as engineering.

Spectral Transform and Solitons
  • Language: en
  • Pages: 515

Spectral Transform and Solitons

  • Type: Book
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  • Published: 2011-08-18
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  • Publisher: Elsevier

Spectral Transform and Solitons

Solitons In Multidimensions: Inverse Spectral Transform Method
  • Language: en
  • Pages: 304

Solitons In Multidimensions: Inverse Spectral Transform Method

The book is devoted to the mathematical theory of soliton phenomena on the plane. The inverse spectral transform method which is a main tool for the study of the (2+1)-dimensional soliton equation is reviewed. The ∂-problem and the Riemann-Hilbert problem method are discussed. Several basic examples of soliton equations are considered in detail. This volume is addressed both to the nonexpert and to the researcher in the field. This is the first literature dealing specifically with multidimensional solition equations.

Solitons and the Inverse Scattering Transform
  • Language: en
  • Pages: 433

Solitons and the Inverse Scattering Transform

  • Type: Book
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  • Published: 2006-05-15
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  • Publisher: SIAM

A study, by two of the major contributors to the theory, of the inverse scattering transform and its application to problems of nonlinear dispersive waves that arise in fluid dynamics, plasma physics, nonlinear optics, particle physics, crystal lattice theory, nonlinear circuit theory and other areas. A soliton is a localised pulse-like nonlinear wave that possesses remarkable stability properties. Typically, problems that admit soliton solutions are in the form of evolution equations that describe how some variable or set of variables evolve in time from a given state. The equations may take a variety of forms, for example, PDEs, differential difference equations, partial difference equations, and integrodifferential equations, as well as coupled ODEs of finite order. What is surprising is that, although these problems are nonlinear, the general solution that evolves from almost arbitrary initial data may be obtained without approximation.

Localized Excitations in Nonlinear Complex Systems
  • Language: en
  • Pages: 435

Localized Excitations in Nonlinear Complex Systems

The study of nonlinear localized excitations is a long-standing challenge for research in basic and applied science, as well as engineering, due to their importance in understanding and predicting phenomena arising in nonlinear and complex systems, but also due to their potential for the development and design of novel applications. This volume is a compilation of chapters representing the current state-of-the-art on the field of localized excitations and their role in the dynamics of complex physical systems.

Introduction to Multidimensional Integrable Equations
  • Language: en
  • Pages: 298

Introduction to Multidimensional Integrable Equations

The soliton represents one ofthe most important ofnonlinear phenomena in modern physics. It constitutes an essentially localizedentity with a set ofremarkable properties. Solitons are found in various areas of physics from gravitation and field theory, plasma physics, and nonlinear optics to solid state physics and hydrodynamics. Nonlinear equations which describe soliton phenomena are ubiquitous. Solitons and the equations which commonly describe them are also of great mathematical interest. Thus, the dis covery in 1967and subsequent development ofthe inversescattering transform method that provides the mathematical structure underlying soliton theory constitutes one of the most important d...

Horizons in World Physics
  • Language: en
  • Pages: 298

Horizons in World Physics

This volume presents leading-edge research in physics from researchers around the world.