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Dynamical Systems and Nonlinear Waves in Plasmas

Autor Asit Saha, Santo Banerjee
en Limba Engleză Hardback – 10 sep 2021
Dynamical systems and Nonlinear Waves in Plasmas is written in a clear and comprehensible style to serve as a compact volume for advanced postgraduate students and researchers working in the areas of Applied Physics, Applied Mathematics, Dynamical Systems, Nonlinear waves in Plasmas or other nonlinear media.
It provides an introduction to the background of dynamical systems, waves, oscillations and plasmas. Basic concepts of dynamical systems and phase plane analysis for the study of dynamical properties of nonlinear waves in plasmas are presented. Different kinds of waves in plasmas are introduced. Reductive perturbative technique and its applications to derive different kinds of nonlinear evolution equations in plasmas are discussed. Analytical wave solutions of these nonlinear evolution equations are presented using the concept of bifurcation theory of planar dynamical systems in a very simple way. Bifurcations of both small and arbitrary amplitudes of various nonlinear acoustic waves in plasmas are presented using phase plots and time-series plots. Super nonlinear waves and its bifurcation behaviour are discussed for various plasma systems. Multiperiodic, quasiperiodic and chaotic motions of nonlinear plasma waves are discussed in presence of external periodic force. Multistability of plasma waves is investigated. Stable oscillation of plasma waves is also presented in dissipative plasmas.
The book is meant for undergraduate and postgraduate students studying plasma physics. It will also serve a reference to the researchers, scientists and faculties to pursue the dynamics of nonlinear waves and its properties in plasmas. It describes the concept of dynamical systems and is useful in understanding exciting features, such as solitary wave, periodic wave, supernonlinear wave, chaotic, quasiperiodic and coexisting structures of nonlinear waves in plasmas. The concepts and approaches, discussed in the book, will also help the students and professionals to study such features in other nonlinear media.
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Specificații

ISBN-13: 9780367487324
ISBN-10: 0367487322
Pagini: 218
Ilustrații: 99
Dimensiuni: 156 x 234 x 14 mm
Greutate: 0.56 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press

Cuprins

Preface. Introduction. Dynamical Systems. Waves in plasmas. Bifurcation of small amplitude waves in plasmas. Bifurcation of arbitrary amplitude waves in plasmas. Bifurcation analysis of supernonlinear waves. Chaos, multistability and stable oscillation in plasmas.

Notă biografică

Asit Saha is Assistant Professor (Research) in the Department of Mathematics, Sikkim Manipal Institute of Technology under Sikkim Manipal University, India. He received University Medal and Kiran Chandra Bhattacharya Medal for his MSc programme from University of North Bengal in 2005. He received his Ph.D. degree in 2016 from Visva-Bharati, India. He received Emerging Researcher Award in 2019 for his research contribution from Sikkim Manipal University. He is serving as an Editor for "The European Physical Journal Plus" since June, 2019. His research areas cover bifurcation, chaotic, hyperchaotic and multistability behaviours of waves in plasmas and various nonlinear fields. His group is known as the first to apply the theory of planar dynamical systems in plasma waves.
Santo Banerjee was working as Associate Professor, in the Institute for Mathematical Research (INSPEM), University Putra Malaysia, Malaysia till 2020, and also a founder member of the Malaysia-Italy Centre of Excellence in Mathematical Science, UPM, Malaysia. He is now associated with the Department of Mathematics, Politecnico di Torino, Italy. His research is mainly concerned with Nonlinear Dynamics, Chaos, Complexity and Secure Communication. He is a Managing Editor of EPJ Plus (Springer).

Descriere

This book provides clear ideas on dynamical systems and waves in plasmas. It also presents derivation of different nonlinear evolution equations describing nonlinear plasma waves (ion-acoustic, dust-acoustic, dust-ion-acoustic, electron-acoustic) through a perturbative approach.