Spatial Patterns

by ;
Format: Hardcover
Pub. Date: 2001-07-01
Publisher(s): Birkhauser
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Summary

Spatial Patterns offers a study of nonlinear higher order model equations that are central to the description and analysis of spatio-temporal pattern formation in the natural sciences. Through a unique combination of results obtained by rigorous mathematical analysis and computational studies, the text exhibits the principal families of solutions, such as kinks, pulses and periodic solutions, and their dependence on critical eigenvalue parameters, and points to a rich structure, much of which still awaits exploration.The exposition unfolds systematically, first focusing on a single equation to achieve optimal transparency, and then branching out to wider classes of equations. The presentation is based on results from real analysis and the theory of ordinary differential equations.Key features:* presentation of a new mathematical method specifically designed for the analysis of multi-bump solutions of reversible systems* strong emphasis on the global structure of solution branches* extensive numerical illustrations of complex solutions and their dependence on eigenvalue parameters* application of the theory to well-known equations in mathematical physics and mechanics, such as the Swift--Hohenberg equation, the nonlinear Schrödinger equation and the equation for the nonlinearly supported beam* includes recent original results by the authors* exercises scattered throughout the text to help illuminate the theory* many research problemsThe book is intended for mathematicians who wish to become acquainted with this new area of partial and ordinary differential equations, for mathematical physicists who wish to learn about the theory developed for a class of well-known higher order pattern-forming model equations, and for graduate students who are looking for an exciting and promising field of research.

Table of Contents

Preface ix
Outline xiii
Introduction
1(40)
Model equations
2(8)
The Fisher-Kolmogorov equation
10(3)
An overview
13(14)
Methods
27(9)
About the presentation
36(3)
Bibliographical notes
39(2)
I The Symmetric Bistable Equation 41(196)
Real Eigenvalues
43(26)
Periodic solutions
44(6)
Kinks (1)
50(3)
Kinks (2)
53(4)
Uniqueness
57(7)
Qualitative properties
64(5)
Estimates
69(32)
Critical points
70(13)
Bounds
83(12)
A limit theorem
95(6)
Periodic Solutions
101(72)
Odd periodic solutions
101(15)
Asymptotics
116(6)
Even periodic solutions up to q = √8
122(11)
Linearisation at u = 1
133(6)
Even periodic solutions beyond q = √8
139(17)
Periodic solutions with nonzero energy (E ≠ 0)
156(17)
Kinks and Pulses
173(24)
Kinks
173(17)
Pulses
190(7)
Chaotic Solutions
197(22)
Chaotic solutions
198(3)
The Induction Lemma
201(3)
The construction
204(6)
The Falkner-Skan equation
210(3)
The Kuramoto-Sivashinsky equation
213(6)
Variational Problems
219(18)
The problem
219(4)
Bounds
223(4)
Symmetry properties
227(4)
Existence of kinks
231(4)
Bibliographical notes
235(2)
II Related Equations 237(84)
The Asymmetric Double-Well Potential
239(36)
Preliminary observations
240(3)
Real eigenvalues
243(3)
Complex eigenvalues
246(13)
Periodic solutions with nonzero energy (E ≠ 0)
259(7)
Periodic solutions in the (a, M)-plane
266(7)
Discussion
273(2)
The Swift-Hohenberg Equation
275(32)
Preliminaries
276(1)
Odd single-bump periodic solutions
277(7)
Multibump periodic solutions
284(5)
The region where κ > 1
289(5)
Generalisations
294(13)
Waves in Nonlinearly Supported Beams
307(14)
The beam equation
307(3)
Single-bump periodic solutions
310(4)
Multibump periodic solutions
314(7)
References 321(16)
Index 337

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