Analysis of Hamiltonian PDEs
Title | Analysis of Hamiltonian PDEs PDF eBook |
Author | Sergej B. Kuksin |
Publisher | Clarendon Press |
Pages | 228 |
Release | 2000 |
Genre | Mathematics |
ISBN | 9780198503958 |
For the last 20-30 years, interest among mathematicians and physicists in infinite-dimensional Hamiltonian systems and Hamiltonian partial differential equations has been growing strongly, and many papers and a number of books have been written on integrable Hamiltonian PDEs. During the last decade though, the interest has shifted steadily towards non-integrable Hamiltonian PDEs. Here, not algebra but analysis and symplectic geometry are the appropriate analysing tools. The present book is the first one to use this approach to Hamiltonian PDEs and present a complete proof of the "KAM for PDEs" theorem. It will be an invaluable source of information for postgraduate mathematics and physics students and researchers.
Hamiltonian Dynamical Systems and Applications
Title | Hamiltonian Dynamical Systems and Applications PDF eBook |
Author | Walter Craig |
Publisher | Springer Science & Business Media |
Pages | 450 |
Release | 2008-02-17 |
Genre | Mathematics |
ISBN | 1402069642 |
This volume is the collected and extended notes from the lectures on Hamiltonian dynamical systems and their applications that were given at the NATO Advanced Study Institute in Montreal in 2007. Many aspects of the modern theory of the subject were covered at this event, including low dimensional problems. Applications are also presented to several important areas of research, including problems in classical mechanics, continuum mechanics, and partial differential equations.
Nonlinear Oscillations of Hamiltonian PDEs
Title | Nonlinear Oscillations of Hamiltonian PDEs PDF eBook |
Author | Massimiliano Berti |
Publisher | Springer Science & Business Media |
Pages | 191 |
Release | 2007-10-01 |
Genre | Mathematics |
ISBN | 0817646809 |
Many partial differential equations (PDEs) that arise in physics can be viewed as infinite-dimensional Hamiltonian systems. This monograph presents recent existence results of nonlinear oscillations of Hamiltonian PDEs, particularly of periodic solutions for completely resonant nonlinear wave equations. The text serves as an introduction to research in this fascinating and rapidly growing field. Graduate students and researchers interested in variational techniques and nonlinear analysis applied to Hamiltonian PDEs will find inspiration in the book.
Hamiltonian Partial Differential Equations and Applications
Title | Hamiltonian Partial Differential Equations and Applications PDF eBook |
Author | Philippe Guyenne |
Publisher | Springer |
Pages | 453 |
Release | 2015-09-11 |
Genre | Mathematics |
ISBN | 149392950X |
This book is a unique selection of work by world-class experts exploring the latest developments in Hamiltonian partial differential equations and their applications. Topics covered within are representative of the field’s wide scope, including KAM and normal form theories, perturbation and variational methods, integrable systems, stability of nonlinear solutions as well as applications to cosmology, fluid mechanics and water waves. The volume contains both surveys and original research papers and gives a concise overview of the above topics, with results ranging from mathematical modeling to rigorous analysis and numerical simulation. It will be of particular interest to graduate students as well as researchers in mathematics and physics, who wish to learn more about the powerful and elegant analytical techniques for Hamiltonian partial differential equations.
Variational Methods
Title | Variational Methods PDF eBook |
Author | Michael Struwe |
Publisher | Springer Science & Business Media |
Pages | 288 |
Release | 2013-04-17 |
Genre | Science |
ISBN | 3662032120 |
Hilbert's talk at the second International Congress of 1900 in Paris marked the beginning of a new era in the calculus of variations. A development began which, within a few decades, brought tremendous success, highlighted by the 1929 theorem of Ljusternik and Schnirelman on the existence of three distinct prime closed geodesics on any compact surface of genus zero, and the 1930/31 solution of Plateau's problem by Douglas and Radò. The book gives a concise introduction to variational methods and presents an overview of areas of current research in this field. This new edition has been substantially enlarged, a new chapter on the Yamabe problem has been added and the references have been updated. All topics are illustrated by carefully chosen examples, representing the current state of the art in their field.
Variational Methods
Title | Variational Methods PDF eBook |
Author | Michael Struwe |
Publisher | Springer Science & Business Media |
Pages | 292 |
Release | 2012-12-06 |
Genre | Science |
ISBN | 3662041944 |
Hilberts talk at the second International Congress of 1900 in Paris marked the beginning of a new era in the calculus of variations. A development began which, within a few decades, brought tremendous success, highlighted by the 1929 theorem of Ljusternik and Schnirelman on the existence of three distinct prime closed geodesics on any compact surface of genus zero, and the 1930/31 solution of Plateaus problem by Douglas and Rad. This third edition gives a concise introduction to variational methods and presents an overview of areas of current research in the field, plus a survey on new developments.
The Action Principle and Partial Differential Equations
Title | The Action Principle and Partial Differential Equations PDF eBook |
Author | Demetrios Christodoulou |
Publisher | Princeton University Press |
Pages | 332 |
Release | 2000-01-17 |
Genre | Mathematics |
ISBN | 9780691049571 |
This book introduces new methods in the theory of partial differential equations derivable from a Lagrangian. These methods constitute, in part, an extension to partial differential equations of the methods of symplectic geometry and Hamilton-Jacobi theory for Lagrangian systems of ordinary differential equations. A distinguishing characteristic of this approach is that one considers, at once, entire families of solutions of the Euler-Lagrange equations, rather than restricting attention to single solutions at a time. The second part of the book develops a general theory of integral identities, the theory of "compatible currents," which extends the work of E. Noether. Finally, the third part introduces a new general definition of hyperbolicity, based on a quadratic form associated with the Lagrangian, which overcomes the obstacles arising from singularities of the characteristic variety that were encountered in previous approaches. On the basis of the new definition, the domain-of-dependence theorem and stability properties of solutions are derived. Applications to continuum mechanics are discussed throughout the book. The last chapter is devoted to the electrodynamics of nonlinear continuous media.