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Università degli Studi di Cagliari

Nonsingular and deformed black holes Fundamental aspects and phenomenology

Abstract

dc:description

Einstein’s theory of gravity, general relativity, stands as one of the most successful and enduring pillars of modern physics. Its predictions have consistently aligned with a vast array of observed phenomena within our Universe. However, the enigmatic nature of gravity persists, particularly when examined at both extremely short and exceedingly vast distances. In this thesis, we explore several aspects of black hole physics, which could encode ignatures of quantum gravity effects at different, even macroscopic, scales. We will investigate modifications and deformations of classical black-hole geometries in a model-independent manner. We start by deriving a general class of regular black holes sourced by an anisotropic fluid violating the strong energy condition and allowing for the circumvention of Penrose’s theorems. The anisotropies are then assumed to parameterize some quantum effects, whose typical scale is encoded in an additional quantum parameter (hair) l. We then turn our attention to the thermodynamics of these models, revealing a preference for the states with l of the order of the horizon scale. This aspect is further investigated through theanalysis of semiclassical dynamics, i.e., the Hawking evaporation process, by using a simple two dimensional balck-hole model. We also test these models against orbits of stars around our galactic center, placing constraints on the strength of the quantum effects. In a separate developement, we study a general class of deformed, rotating, singular black holes, focusing on their phenomenology and, in particular, the superradiant amplification of test fields. We then consider the problem of describing the gravitational field generated by a quantum particle in a delocalized state. The resultant geometry resembles the first models we analyzed, allowing to reinterpret the smearing of the singularity in terms of the uncertainty principle. Finally, we analyze a model in which black holes are medelled as sets of oscillators whose typical frequencies are given by the quasinormal modes of the systems. Under some assumptions,we are able to obtain the Bekenstein-Hawking formula for the entropy and its first, logarithmic correction. Finally, we reinterpret this model in terms of the dual conformal field theory at the boundary, finding that the perturbations of two-dimensional regular black holes are related to a conformally-invariant generalization of the quantum harmonic oscillator, described by the de Alfaro-Fubini-Furlan theory.

Degree

thesis:*
Grantor dc:publisher
Università degli Studi di Cagliari
Year dc:date
2024

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • OI, MAURO
Contributors dc:contributor
  • CADONI, MARIANO

Subjects

dc:subject × 1

Rights

dc:rights
Statement dc:rights
  • info:eu-repo/semantics/openAccess
Language dc:language
eng

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:iris.unica.it:11584/391991

Chain of custody

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Harvested from
Università di Cagliari
Base URL
iris.unica.it/oai/request
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

OI, MAURO. Nonsingular and deformed black holes Fundamental aspects and phenomenology. Università degli Studi di Cagliari, 2024. https://hdl.handle.net/11584/391991