Charged Particle Motion and Electromagnetic Field in γ Spacetime

dc.contributor.authorCarlos A. Benavides-Gallego;
dc.contributor.authorAhmadjon Abdujabbarov;
dc.contributor.authorDaniele Malafarina;
dc.contributor.authorBobomurat Ahmedov;
dc.contributor.authorCosimo Bambi
dc.date.accessioned2025-08-08T06:49:44Z
dc.date.available2025-08-08T06:49:44Z
dc.date.issued2019
dc.description.abstractWe consider the electromagnetic field occurring in the background of a static, axially symmetric vacuum solution of Einstein’s field equations immersed in an external magnetic field. The solution, known as the γ metric (or Zipoy-Voorhees), is related to the Schwarzschild spacetime through a real positive parameter γ that describes its departure from spherical symmetry. We study the motion of charged and uncharged particles in this spacetime and particle collision in the vicinity of the singular surface and compare with the corresponding result for Schwarzschild. We show that there is a sharp contrast with the black hole case; in particular, in the prolate case (γ < 1) particle collision can occur with an arbitrarily high center of mass energy. This mechanism could in principle allow one to distinguish such a source from a black hole.
dc.identifier.citationBenavides-Gallego, C. A., Abdujabbarov, A., Malafarina, D., Ahmedov, B., & Bambi, C. (2019). Charged Particle Motion and Electromagnetic Field in γ Spacetime. Physical Review D, 99(044012). https://doi.org/10.1103/PhysRevD.99.044012
dc.identifier.urihttps://nur.nu.edu.kz/handle/123456789/9150
dc.language.isoen
dc.subjectγ metric
dc.subjectZipoy–Voorhees metric
dc.subjectcharged particle motion
dc.subjectelectromagnetic field
dc.subjecthigh-energy collisions
dc.subjectSchwarzschild limit
dc.titleCharged Particle Motion and Electromagnetic Field in γ Spacetime
dc.typeArticle

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