Waveguide Propagation of Nonlinear Waves

Impact of Inhomogeneity and Accompanying Effects

Specificaties
Paperback, blz. | Engels
Springer International Publishing | 2020
ISBN13: 9783030226541
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Springer International Publishing e druk, 2020 9783030226541
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Samenvatting

This book addresses the peculiarities of nonlinear wave propagation in waveguides and explains how the stratification depends on the waveguide and confinement. An example of this is an optical fibre that does not allow light to pass through a density jump. The book also discusses propagation in the nonlinear regime, which is characterized by a specific waveform and amplitude, to demonstrate so-called solitonic behaviour. In this case, a wave may be strongly localized, and propagates with a weak change in shape. In the waveguide case there are additional contributions of dispersion originating from boundary or asymptotic conditions.

Offering concrete guidance on solving application problems, this essentially (more than twice) expanded second edition includes various aspects of guided propagation of nonlinear waves as well as new topics like solitonic behaviour of one-mode and multi-mode excitation and propagation and plasma waveguides, propagation peculiarities of electromagnetic waves in metamaterials, new types of dispersion, dissipation, electromagnetic waveguides, planetary waves and plasma waves interaction.The key feature of the solitonic behaviour is based on Coupled KdV and Coupled NS systems. The systems are derived in this book and solved numerically with the proof of stability and convergence. The domain wall dynamics of ferromagnetic microwaveguides  and Bloch waves in nano-waveguides are also included with some problems of magnetic momentum and charge transport.

Specificaties

ISBN13:9783030226541
Taal:Engels
Bindwijze:paperback
Uitgever:Springer International Publishing

Inhoudsopgave

<div><p>1.Introduction<br> addition about boundary layer and plasma waveguides. Rearramgement of chapters.</p>

<p><br> 2. Operator of evolution and projectors to eigenspaces.&nbsp;<strong> Partially new. Was presented in different sections.</strong><br> <br> 2.1 Abelian case</p>

<p>2.2 Nonabelian projecting. <strong>New</strong></p>

<p>2.3 Nonlinear terms account.</p>

<p>3. Electromagnetic waveguides.</p>

<p>3.1 Plane waveguides</p>

<p>3.2 Rectangular waveguides</p>

<p>3.3 Cylindrical dielectric waveguides&nbsp; <strong>New</strong></p>

<p>3.4 Electromagetic waves in metamaterials.&nbsp;<strong>New</strong><br> <br> 3.5 Solitons <strong>Partially New</strong></p>

<p>&nbsp;</p>

<p>4. Waveguides in Hydrodynamics</p>

<p>4.1 Boundary layer<strong> New</strong></p>

<p>4.2 Atmosphere acoustic and internal gravity waves</p>

<p>4.3 Ocean internal gravity waves</p>

<p>4.4 . Quasi-waveguide propagation <strong>Partially New</strong></p>

<p>4.5 Planetary waves</p>

<p>4.6&nbsp;&nbsp;Mean field generation</p>

<p><br> 5. Guide propagation and interaction of plasma waves.</p>

<p>5.1 Plasma waves in stratified plazma&nbsp;<br> <br> 5.2 Interaction of plasma waves.</p>

<p>5.2 Plasma waveguides. <strong>Partially</strong>&nbsp;<strong>New (former "bounded')</strong></p>

5.3 . Nanowaveguides. Charge transport.<strong> New</strong>&nbsp;&nbsp;<br></div>
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        Waveguide Propagation of Nonlinear Waves