arXiv · 1303.6143
Hamiltonian description of self-consistent wave-particle dynamics in a periodic structure
Abstract
Conservation of energy and momentum in the classical theory of radiating electrons has been a challenging problem since its inception. We propose a formulation of classical electrodynamics in Hamiltonian form that satisfies the Maxwell equations and the Lorentz force. The radiated field is represented with eigenfunctions using the Gel'fand $β$-transform. The electron Hamiltonian is the standard one coupling the particles with the propagating fields. The dynamics conserves energy and excludes self-acceleration. A complete Hamiltonian formulation results from adding electrostatic action-at-a-distance coupling between electrons.
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Frédéric André, Pierre Bernardi, Nikita M. Ryskin, Fabrice Doveil, Yves Elskens. 2013-07-18. Hamiltonian description of self-consistent wave-particle dynamics in a periodic structure. https://doi.org/10.1209/0295-5075%2F103%2F28004
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