Electrodynamics under Action of Null Cosmic Strings
D.V. Fursaev, I.G. Pirozhenko

TL;DR
This paper develops a method to analyze electromagnetic effects caused by null cosmic strings, revealing how they influence EM waves and charges, including wave refraction, interference, and radiation pulses, expanding understanding of string-field interactions.
Contribution
It introduces a novel approach to study EM effects of null cosmic strings using characteristic initial value problems and explores their impact on electromagnetic waves and charges.
Findings
Null strings cause wave refraction and interference patterns.
Null strings induce a self-force on nearby electric charges.
Moving null strings generate EM radiation pulses from charges.
Abstract
A method to study electromagnetic (EM) effects generated by a straight null cosmic string moving in classical EM fields is suggested. The string is shown to induce an additional EM field which can be described as a solution to homogeneous Maxwell equations with initial data set on a null surface, the string event horizon, where the string world-sheet belongs to. The initial data ensure the required holonomy of the string space-time caused by the gravity of the string. This characteristic initial value problem is used to study interaction of plane waves with null strings and perturbations by the strings of the Coulomb fields of electric charges. It is shown that parts of an incoming EM wave crossing the string horizon from different sides of the string are refracted with respect to each other and leave behind the string a wedge-like region of interference. A null string moving near an…
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Taxonomy
TopicsRelativity and Gravitational Theory · Solar and Space Plasma Dynamics · Geophysics and Gravity Measurements
