Meyer / Hall | Introduction to Hamiltonian Dynamical Systems and the N-Body Problem | E-Book | sack.de
E-Book

E-Book, Englisch, 294 Seiten, Web PDF

Reihe: Applied Mathematical Sciences

Meyer / Hall Introduction to Hamiltonian Dynamical Systems and the N-Body Problem


Erscheinungsjahr 2013
ISBN: 978-1-4757-4073-8
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Englisch, 294 Seiten, Web PDF

Reihe: Applied Mathematical Sciences

ISBN: 978-1-4757-4073-8
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark



The theory of Hamiltonian systems is a vast subject which can be studied from many different viewpoints. This book develops the basic theory of Hamiltonian differential equations from a dynamical systems point of view. That is, the solutions of the differential equations are thought of as curves in a phase space and it is the geometry of these curves that is the important object of study. The analytic underpinnings of the subject are developed in detail. The last chapter on twist maps has a more geometric flavor. It was written by Glen R. Hall. The main example developed in the text is the classical N-body problem, i.e., the Hamiltonian system of differential equations which describe the motion of N point masses moving under the influence of their mutual gravitational attraction. Many of the general concepts are applied to this example. But this is not a book about the N-body problem for its own sake. The N-body problem is a subject in its own right which would require a sizable volume of its own. Very few of the special results which only apply to the N-body problem are given.

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I. Hamiltonian Differential Equations and the N-Body Problem.- II. Linear Hamiltonian Systems.- III. Exterior Algebra and Differential Forms.- IV. Symplectic Transformations and Coordinates.- V. Introduction to the Geometric Theory of Hamiltonian Dynamical Systems.- VI. Continuation of Periodic Solutions.- VII. Perturbation Theory and Normal Forms.- VIII. Bifurcations of Periodic Orbits.- IX. Stability and KAM Theory.- X. Twist Maps and Invariant Curves.- References.



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