Electric field lines of an arbitrarily moving charged particle

Author:

Arutunian S. G.12,Aginian M. A.3,Margaryan A. V.3,Chung M.4,Lazareva E. G.3

Affiliation:

1. Alikhanyan National Scientific Laboratory , 0036 Yerevan, Armenia and , 0040 Yerevan, Armenia

2. CANDLE Synchrotron Research Institute , 0036 Yerevan, Armenia and , 0040 Yerevan, Armenia

3. Alikhanyan National Scientific Laboratory , 0036 Yerevan, Armenia

4. Ulsan National Institute of Science and Technology , 44919 Ulsan, South Korea

Abstract

Electromagnetic fields of relativistic charged particles have a broad frequency spectrum and a sophisticated spatial structure. Field lines offer a visual representation of this spatial structure. In this article, we derive a general set of equations for the field lines of any moving charged particle. The electric field lines are completely determined by the unit vector from the retarding point to the observation point. After proper transformations, the field line equations describe the rotation of this vector with an angular velocity coinciding with Thomas precession. In some cases, including all planar trajectories, the field line equations reduce to linear differential equations with constant coefficients. We present a detailed derivation of these equations and their general analytical solution. We then illustrate this method by constructing field lines for the “figure eight” motion of an electric charge moving under the influence of a plane wave, including complex field lines in three dimensions.

Funder

Ministry of Education and Science

National Research Foundation of Korea

Publisher

American Association of Physics Teachers (AAPT)

Subject

General Physics and Astronomy

Reference31 articles.

1. Electric field lines of relativistically moving point charges;Am. J. Phys.,2020

2. J. H. Field , “ Retarded electric and magnetic fields of a moving charge: Feynman's derivation of Lienard–Wiechert potentials revisited,” arXiv:0704.1574v3 (2015).

3. M. A. Aginian and S. G.Arutunian, “ Force lines of electric and magnetic fields of arbitrary moving charge,” Report No. EFI-684-74-83-YEREVAN (Yerevan Physics Institute, Yerevan, 1983).

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