Ray Methods for Nonlinear Waves in Fluids and Plasmas

Ray Methods for Nonlinear Waves in Fluids and Plasmas
Author: Marcelo Anile,P Pantano,G Russo,J Hunter
Publsiher: CRC Press
Total Pages: 268
Release: 2021-06-24
Genre: Mathematics
ISBN: 9781000447583

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Presents in a systematic and unified manner the ray method, in its various forms, for studying nonlinear wave propagation in situations of physical interest, essentially fluid dynamics and plasma physics.

Ray Methods for Nonlinear Waves in Fluids and Plasmas

Ray Methods for Nonlinear Waves in Fluids and Plasmas
Author: Marcelo Anile,P Pantano,G Russo,J Hunter
Publsiher: Chapman and Hall/CRC
Total Pages: 264
Release: 1993-05-04
Genre: Mathematics
ISBN: 0582023432

Download Ray Methods for Nonlinear Waves in Fluids and Plasmas Book in PDF, Epub and Kindle

Presents in a systematic and unified manner the ray method, in its various forms, for studying nonlinear wave propagation in situations of physical interest, essentially fluid dynamics and plasma physics.

Ray Methods for Nonlinear Waves in Fluids and Plasmas

Ray Methods for Nonlinear Waves in Fluids and Plasmas
Author: Anonim
Publsiher: Unknown
Total Pages: 243
Release: 1993
Genre: Nonlinear waves
ISBN: OCLC:610513334

Download Ray Methods for Nonlinear Waves in Fluids and Plasmas Book in PDF, Epub and Kindle

Ray Methods for Nonlinear Waves in Fluids and Plasmas

Ray Methods for Nonlinear Waves in Fluids and Plasmas
Author: Marcelo Anile,P Pantano,G Russo,J Hunter
Publsiher: CRC Press
Total Pages: 255
Release: 2021-06-23
Genre: Mathematics
ISBN: 9781000444858

Download Ray Methods for Nonlinear Waves in Fluids and Plasmas Book in PDF, Epub and Kindle

Presents in a systematic and unified manner the ray method, in its various forms, for studying nonlinear wave propagation in situations of physical interest, essentially fluid dynamics and plasma physics.

Introduction to Nonlinear Fluid Plasma Waves

Introduction to Nonlinear Fluid Plasma Waves
Author: B.K Shivamoggi
Publsiher: Springer Science & Business Media
Total Pages: 213
Release: 2012-12-06
Genre: Science
ISBN: 9789400927728

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A variety of nonlinear effects occur in a plasma. First, there are the wave steepening effects which can occur in any fluid in which the propagation speed depends upon the wave-amplitude. In a dispersive medium this can lead to classes of nonlinear waves which may have stationary solutions like solitons and shocks. Because the plasma also acts like an inherently nonlinear dielectric resonant interactions among waves lead to exchange of energy among them. Further, an electromagnetic wave interacting with a plasma may parametrically excite other waves in the plasma. A large-amplitude Langmuir wave undergoes a modulational instability which arises through local depressions in plasma density and the corresponding increases in the energy density of the wave electric field. Whereas a field collapse occurs in two and three dimensions, in a one-dimensional case, spatially localized stationary field structures called Langmuir solitons can result. Many other plasma waves like upper-hybrid waves, lower-hybrid waves etc. can also undergo a modulational instability and produce localized field structures. A new type of nonlinear effect comes into play when an electromagnetic wave propagating through a plasma is strong enough to drive the electrons to relativistic speeds. This leads to a propagation of an electromagnetic wave in a normally overdense plasma, and the coupling of the electromagnetic wave to a Langmuir wave in the plasma. The relativistic mass variation of the electrons moving in an intense electromagnetic wave can also lead to a modulational instability of the latter.

Spectral Methods in Soliton Equations

Spectral Methods in Soliton Equations
Author: I D Iliev,Eugeni Khristov,Kiril Petrov Kirchev
Publsiher: CRC Press
Total Pages: 412
Release: 1994-11-21
Genre: Mathematics
ISBN: 058223963X

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Soliton theory as a method for solving some classes of nonlinear evolution equations (soliton equations) is one of the most actively developing topics in mathematical physics. This book presents some spectral theory methods for the investigation of soliton equations ad the inverse scattering problems related to these equations. The authors give the theory of expansions for the Sturm-Liouville operator and the Dirac operator. On this basis, the spectral theory of recursion operators generating Korteweg-de Vries type equations is presented and the Ablowitz-Kaup-Newell-Segur scheme, through which the inverse scattering method could be understood as a Fourier-type transformation, is considered. Following these ideas, the authors investigate some of the questions related to inverse spectral problems, i.e. uniqueness theorems, construction of explicit solutions and approximative methods for solving inverse scattering problems. A rigorous investigation of the stability of soliton solutions including solitary waves for equations which do not allow integration within inverse scattering method is also presented.

Quantitative Information Fusion for Hydrological Sciences

Quantitative Information Fusion for Hydrological Sciences
Author: Xing Cai,T.-C. Jim Yeh
Publsiher: Springer
Total Pages: 218
Release: 2008-01-12
Genre: Science
ISBN: 9783540753841

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In this rapidly evolving world of knowledge and technology, do you ever wonder how hydrology is catching up? Here, two highly qualified scientists edit a volume that takes the angle of computational hydrology and envision one of the science’s future directions – namely, the quantitative integration of high-quality hydrologic field data with geologic, hydrologic, chemical, atmospheric, and biological information to characterize and predict natural systems in hydrological sciences.

Optical Solitons

Optical Solitons
Author: Yuri S. Kivshar,Govind Agrawal
Publsiher: Academic Press
Total Pages: 540
Release: 2003-06-12
Genre: Science
ISBN: 0080538096

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The current research into solitons and their use in fiber optic communications is very important to the future of communications. Since the advent of computer networking and high speed data transmission technology people have been striving to develop faster and more reliable communications media. Optical pulses tend to broaden over relatively short distances due to dispersion, but solitons on the other hand are not as susceptible to the effects of dispersion, and although they are subject to losses due to attenuation they can be amplified without being received and re-transmitted. This book is the first to provide a thorough overview of optical solitons. The main purpose of this book is to present the rapidly developing field of Spatial Optical Solitons starting from the basic concepts of light self-focusing and self-trapping. It will introduce the fundamental concepts of the theory of nonlinear waves and solitons in non-integrated but physically realistic models of nonlinear optics including their stability and dynamics. Also, it will summarize a number of important experimental verification of the basic theoretical predictions and concepts covering the observation of self-focusing in the earlier days of nonlinear optics and the most recent experimental results on spatial solitons, vortex solitons, and soliton interaction & spiraling. * Introduces the fundamental concepts of the theory of nonlinear waves and solitons through realistic models * Material is based on authors' years of experience actively working in and researching the field * Summarizes the most important experimental verification of the basic theories, predictions and concepts of this ever evolving field from the earliest studies to the most recent