Electromagnetic Scoot

Fuente: arXiv
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Main Authors: Gralla, Samuel E., Lobo, Kunal
Format: Preprint
Published: 2021
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author Gralla, Samuel E.
Lobo, Kunal
author_facet Gralla, Samuel E.
Lobo, Kunal
contents Recent work on scattering of massive bodies in general relativity has revealed that the mechanical center of mass of the system (or, more precisely, its relativistic mass moment) undergoes a shift during the scattering process. We show that the same phenomenon occurs in classical scattering of charged particles in flat spacetime and study the effect in detail. Working to leading order in the interaction, we derive formulas for the initial and final values of the mechanical and electromagnetic energy, momentum, angular momentum, and mass moment. We demonstrate that the change in mechanical mass moment is balanced by an opposite change in the mass moment stored in the electromagnetic field. This is a non-radiative exchange between particles and field, analogous to exchange of kinetic and potential energy. A simple mechanical analogy is a person scooting forward on the floor, who exchanges mass moment with the floor. We therefore say that electromagnetic scattering results in an electromagnetic scoot.
format Preprint
id arxiv_https___arxiv_org_abs_2112_01729
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Electromagnetic Scoot
Gralla, Samuel E.
Lobo, Kunal
General Relativity and Quantum Cosmology
Recent work on scattering of massive bodies in general relativity has revealed that the mechanical center of mass of the system (or, more precisely, its relativistic mass moment) undergoes a shift during the scattering process. We show that the same phenomenon occurs in classical scattering of charged particles in flat spacetime and study the effect in detail. Working to leading order in the interaction, we derive formulas for the initial and final values of the mechanical and electromagnetic energy, momentum, angular momentum, and mass moment. We demonstrate that the change in mechanical mass moment is balanced by an opposite change in the mass moment stored in the electromagnetic field. This is a non-radiative exchange between particles and field, analogous to exchange of kinetic and potential energy. A simple mechanical analogy is a person scooting forward on the floor, who exchanges mass moment with the floor. We therefore say that electromagnetic scattering results in an electromagnetic scoot.
title Electromagnetic Scoot
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2112.01729