Gravitational collapse of a spherical scalar field
arXiv:2307.01796 · doi:10.1007/978-981-97-1172-7_6
Abstract
Examining the relativistic collapse of a spherical spacetime where gravity is coupled with a scalar field, this review provides a thorough analysis of some of the most relevant studies from both analytical and numerical perspectives. The discussion includes achievements made in this field, with a focus on those related to cosmic censorship, as well as recent perspectives on the topic.
Invited chapter for the edited book New Frontiers in Gravitational Collapse and Spacetime Singularities (Eds. P. Joshi and D. Malafarina, Springer Singapore, expected in 2023)
References in corpus (13)
- Self-similar scalar field collapse
- Gravitational collapse of charged scalar fields
- Penrose's 1965 singularity theorem: From geodesic incompleteness to cosmic censorship
- Critical Behavior in a Massless Scalar Field Collapse with Self-interaction Potential
- Existence of naked singularities in Brans-Dicke theory of gravitation. An analytical and numerical study
- The dynamical behaviour of homogeneous scalar-field spacetimes with general self-interaction potentials
- Collapse and dispersal in massless scalar field models
- Negative potentials and collapsing universes
- Critical gravitational collapse of a non-minimally coupled scalar field
- Critical Collapse of Einstein Cluster
- Strength of the naked singularity in critical collapse
- Bounds for scalar waves on self-similar naked-singularity backgrounds
- Analytical solutions for black-hole critical behaviour