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The Lorentz-Dirac and Landau-Lifshitz equations from the perspective of modern renormalization theory

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arxiv 1207.1745 v2 pith:2OWJJV6G submitted 2012-07-06 physics.class-ph hep-th

classification physics.class-phhep-th
keywords theoryclassicalelectronrenormalizationequationequationsfieldlandau-lifshitz
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This paper uses elementary techniques drawn from renormalization theory to derive the Lorentz-Dirac equation for the relativistic classical electron from the Maxwell-Lorentz equations for a classical charged particle coupled to the electromagnetic field. I show that the resulting effective theory, valid for electron motions that change over distances large compared to the classical electron radius, reduces naturally to the Landau-Lifshitz equation. No familiarity with renormalization or quantum field theory is assumed.

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    hep-ph 2024-12 conditional novelty 7.0 of 10

    First WKB and worldline-instanton calculations of nonlinear trident in time-dependent and spacetime-dependent electric fields, including direct and exchange terms and a Coulomb suppression factor.

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