Dynamics of massive and massless particles in the spacetime of a wiggly cosmic dislocation

Fuente: arXiv
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Autores principales: Azevedo, Frankbelson dos S., Silva, Edilberto O.
Formato: Preprint
Publicado: 2024
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author Azevedo, Frankbelson dos S.
Silva, Edilberto O.
author_facet Azevedo, Frankbelson dos S.
Silva, Edilberto O.
contents In this paper, we investigate the spacetime containing both small-scale structures (wiggles) and spatial dislocation, forming a wiggly cosmic dislocation. We study the combined effects of these features on the dynamics of massive and massless particles. Our results show that while wiggles alone lead to bound states and dislocation introduces angular momentum corrections, their coupling produces more complex effects, influencing both particle motion and wave propagation. Notably, this coupling significantly modifies radial solutions and eigenvalues, with the direction of motion or propagation becoming a critical factor in determining the outcomes. Numerical solutions reveal detailed aspects of particle dynamics as functions of dislocation and string parameters, including plots of trajectories, radial probability densities, and energy levels. These findings deepen our understanding of how a wiggly cosmic dislocation shapes particle dynamics, suggesting new directions for theoretical exploration in cosmological models.
format Preprint
id arxiv_https___arxiv_org_abs_2409_12325
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamics of massive and massless particles in the spacetime of a wiggly cosmic dislocation
Azevedo, Frankbelson dos S.
Silva, Edilberto O.
High Energy Physics - Theory
Classical Physics
In this paper, we investigate the spacetime containing both small-scale structures (wiggles) and spatial dislocation, forming a wiggly cosmic dislocation. We study the combined effects of these features on the dynamics of massive and massless particles. Our results show that while wiggles alone lead to bound states and dislocation introduces angular momentum corrections, their coupling produces more complex effects, influencing both particle motion and wave propagation. Notably, this coupling significantly modifies radial solutions and eigenvalues, with the direction of motion or propagation becoming a critical factor in determining the outcomes. Numerical solutions reveal detailed aspects of particle dynamics as functions of dislocation and string parameters, including plots of trajectories, radial probability densities, and energy levels. These findings deepen our understanding of how a wiggly cosmic dislocation shapes particle dynamics, suggesting new directions for theoretical exploration in cosmological models.
title Dynamics of massive and massless particles in the spacetime of a wiggly cosmic dislocation
topic High Energy Physics - Theory
Classical Physics
url https://arxiv.org/abs/2409.12325