On the uniform motion of a relativistic charged particle in a homogeneous electromagnetic field in Minkowski space E24

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John Wiley and Sons Ltd

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info:eu-repo/semantics/closedAccess

Özet

We discuss the geometric characterization of the trajectory of a moving charged particle, for the case of a homogeneous electromagnetic field, in Minkowski space E 4 2 when the motion is governed by the Lorentz equation. We employ a totally relativistic approach during the discussion. It is based on a systematic use of the Faraday antisymmetric tensor properties of the electromagnetic field and of the four-dimensional Frenet-Serret formula, which is adapted to the Minkowski 4-space with index two to determine the worldline geometry of the electromagnetic field acting on the particle. Finally, we present the necessary and sufficient conditions to obtain uniform motion of the relativistic charged particle in a homogeneous electromagnetic field in E 4 2 . © 2019 John Wiley & Sons, Ltd.

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Faraday antisymmetric tensor, Frenet-Serret frame, homogeneous electromagnetic field, Minkowski space with index two, trajectory of a charged particle

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Mathematical Methods in the Applied Sciences

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42

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9

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Onay

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