Simulating Hamiltonian Dynamics

Simulating Hamiltonian Dynamics

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2005 · Anglais · livre numérique · 4 editions
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Description

In the realm of computational physics, the exploration of Hamiltonian dynamics presents unique challenges and opportunities for innovation. This work by Benedict Leimkuhler and Simeon Reich delves into the theoretical underpinning and practical applications of geometric integrators. The authors meticulously outline the principles behind these advanced time-stepping methods, emphasizing their ability to preserve important physical properties over time, specifically conservation laws.

The text combines rigorous mathematical analysis with practical algorithms, making it accessible to both seasoned practitioners and newcomers to the field. By illustrating how these integrators operate in various contexts, the authors provide a comprehensive framework for understanding their impact on simulations of dynamical systems. Readers are walked through the nuances of implementation, ensuring they can apply the concepts to their own research effectively.

As the study emphasizes the importance of geometric structures in Hamiltonian systems, it also showcases the intricacies involved in developing algorithms that are both efficient and reliable. Through examples and in-depth discussions, Leimkuhler and Reich's work fosters a deeper appreciation for the beauty and complexity of dynamical behavior, bolstering the capabilities of scientists and engineers in their computational endeavors.

Détails du livre

Format livre numérique
Pages 397 pages
Langue Anglais
Publié Jan 1, 2005
Éditeur Cambridge University Press
Éditions 4 editions
ISBN-10 1280415061
ISBN-13 9781280415067
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