Spectral lines of dirty wormholes

Fuente: arXiv
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Main Authors: Furuta, Leonardo K. S., Magalhães, Renan B., Junior, Haroldo C. D. Lima, Crispino, Luís C. B.
Format: Preprint
Published: 2025
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author Furuta, Leonardo K. S.
Magalhães, Renan B.
Junior, Haroldo C. D. Lima
Crispino, Luís C. B.
author_facet Furuta, Leonardo K. S.
Magalhães, Renan B.
Junior, Haroldo C. D. Lima
Crispino, Luís C. B.
contents Astrophysical objects like black holes are usually surrounded by matter in the form of accretion disks or jets of matter. These astrophysical scenarios are expected to introduce novel phenomenology in the scattering of particles and fields. Wormholes are viable candidates for exotic compact objects that can mimic some black hole properties. Hence, it is natural to wonder what would happen if the central astrophysical object were a wormhole, instead of a black hole. We investigate the astrophysical environment effect on the absorption of a massless scalar field by a dirty wormhole surrounded by a thick shell of matter. We study null geodesics around these dirty wormholes and analyze under which conditions new pairs of light rings can appear. The presence of new stable light rings allows new quasibound states in the spacetime, apart from the ones trapped near the throat. Thus, the astrophysical environment can introduce deviations in the absorption bands. Remarkably, although heavy and dense distributions of matter are considered surrounding the wormhole, the position of most of the spectral lines in the absorption bands is preserved, indicating that the astrophysical environment cannot hide some fingerprints of the central object.
format Preprint
id arxiv_https___arxiv_org_abs_2512_04274
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spectral lines of dirty wormholes
Furuta, Leonardo K. S.
Magalhães, Renan B.
Junior, Haroldo C. D. Lima
Crispino, Luís C. B.
General Relativity and Quantum Cosmology
Astrophysical objects like black holes are usually surrounded by matter in the form of accretion disks or jets of matter. These astrophysical scenarios are expected to introduce novel phenomenology in the scattering of particles and fields. Wormholes are viable candidates for exotic compact objects that can mimic some black hole properties. Hence, it is natural to wonder what would happen if the central astrophysical object were a wormhole, instead of a black hole. We investigate the astrophysical environment effect on the absorption of a massless scalar field by a dirty wormhole surrounded by a thick shell of matter. We study null geodesics around these dirty wormholes and analyze under which conditions new pairs of light rings can appear. The presence of new stable light rings allows new quasibound states in the spacetime, apart from the ones trapped near the throat. Thus, the astrophysical environment can introduce deviations in the absorption bands. Remarkably, although heavy and dense distributions of matter are considered surrounding the wormhole, the position of most of the spectral lines in the absorption bands is preserved, indicating that the astrophysical environment cannot hide some fingerprints of the central object.
title Spectral lines of dirty wormholes
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2512.04274