Exact solutions for the relativistic dynamics of a self-consistent system with electromagnetic and gravitational interaction within the Wigner-Vlasov formalism

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Perepelkin, E. E., Sadovnikov, B. I., Inozemtseva, N. G., Baibara, I. Yu.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912653721468928
author Perepelkin, E. E.
Sadovnikov, B. I.
Inozemtseva, N. G.
Baibara, I. Yu.
author_facet Perepelkin, E. E.
Sadovnikov, B. I.
Inozemtseva, N. G.
Baibara, I. Yu.
contents This work derives exact solutions to the problem of interacting particle density evolution in relativistic and quasi-relativistic approximations for electromagnetic and gravitational interactions. Two types of radial symmetry for the initial density distribution are considered: spherical and cylindrical. It is shown that the relativistic effect delays the onset of the shock wave moment, and in some cases removes it entirely or, conversely, can facilitate it. The analysis of the system's dynamics is carried out within the Wigner-Vlasov formalism, which makes it possible to extend the obtained solutions to quantum systems, including those with gravitational interaction. The derived exact solutions can be directly used as a cross-check for modeling and optimizing nonlinear problems of beam dynamics with account for space charge, astrophysics, plasma physics, and quantum systems with a shock wave.
format Preprint
id arxiv_https___arxiv_org_abs_2510_15090
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Exact solutions for the relativistic dynamics of a self-consistent system with electromagnetic and gravitational interaction within the Wigner-Vlasov formalism
Perepelkin, E. E.
Sadovnikov, B. I.
Inozemtseva, N. G.
Baibara, I. Yu.
Mathematical Physics
This work derives exact solutions to the problem of interacting particle density evolution in relativistic and quasi-relativistic approximations for electromagnetic and gravitational interactions. Two types of radial symmetry for the initial density distribution are considered: spherical and cylindrical. It is shown that the relativistic effect delays the onset of the shock wave moment, and in some cases removes it entirely or, conversely, can facilitate it. The analysis of the system's dynamics is carried out within the Wigner-Vlasov formalism, which makes it possible to extend the obtained solutions to quantum systems, including those with gravitational interaction. The derived exact solutions can be directly used as a cross-check for modeling and optimizing nonlinear problems of beam dynamics with account for space charge, astrophysics, plasma physics, and quantum systems with a shock wave.
title Exact solutions for the relativistic dynamics of a self-consistent system with electromagnetic and gravitational interaction within the Wigner-Vlasov formalism
topic Mathematical Physics
url https://arxiv.org/abs/2510.15090