The University of Southampton
University of Southampton Institutional Repository

Critical phenomena in a gravitational collapse with a competing scalar field and gravitational waves in 4+1 dimensions

Critical phenomena in a gravitational collapse with a competing scalar field and gravitational waves in 4+1 dimensions
Critical phenomena in a gravitational collapse with a competing scalar field and gravitational waves in 4+1 dimensions

In the gravitational collapse of matter beyond spherical symmetry, gravitational waves are necessarily present. On the other hand, gravitational waves can collapse to a black hole even without matter. One might therefore wonder how the interaction and competition between the matter fields and gravitational waves affects critical phenomena at the threshold of black hole formation. As a toy model for this, we study the threshold of black-hole formation in 4+1 dimensions, where we add a massless minimally coupled scalar matter field to the gravitational wave ansatz of Bizón, Chmaj, and Schmidt (in a nutshell, Bianchi IX on S3×radius×time). In order to find a stable discretization of the equation governing the gravitational waves in 4+1 physical dimensions, which has the same principal part as the spherical wave equation in 9+1 dimensions, we first revisit the problem of critical spherical scalar field collapse in n+2 dimensions with large n. Returning to the main problem, we find numerically that weak gravitational wave perturbations of the scalar field critical solution decay, while weak scalar perturbations of the gravitational wave critical solution also decay. A dynamical systems picture then suggests the existence of a codimension-2 attractor. We find numerical evidence for this attractor by evolving mixed initial data and fine-tuning both an overall amplitude and the relative strength of the two fields.

2470-0010
Porto Veronese, Bernardo
5512cbe7-9261-495b-b5df-70aea71c42ed
Gundlach, Carsten
586f1eb5-3185-4b2b-8656-c29c436040fc
Porto Veronese, Bernardo
5512cbe7-9261-495b-b5df-70aea71c42ed
Gundlach, Carsten
586f1eb5-3185-4b2b-8656-c29c436040fc

Porto Veronese, Bernardo and Gundlach, Carsten (2022) Critical phenomena in a gravitational collapse with a competing scalar field and gravitational waves in 4+1 dimensions. Physical Review D, 106 (10), [104044]. (doi:10.1103/PhysRevD.106.104044).

Record type: Article

Abstract

In the gravitational collapse of matter beyond spherical symmetry, gravitational waves are necessarily present. On the other hand, gravitational waves can collapse to a black hole even without matter. One might therefore wonder how the interaction and competition between the matter fields and gravitational waves affects critical phenomena at the threshold of black hole formation. As a toy model for this, we study the threshold of black-hole formation in 4+1 dimensions, where we add a massless minimally coupled scalar matter field to the gravitational wave ansatz of Bizón, Chmaj, and Schmidt (in a nutshell, Bianchi IX on S3×radius×time). In order to find a stable discretization of the equation governing the gravitational waves in 4+1 physical dimensions, which has the same principal part as the spherical wave equation in 9+1 dimensions, we first revisit the problem of critical spherical scalar field collapse in n+2 dimensions with large n. Returning to the main problem, we find numerically that weak gravitational wave perturbations of the scalar field critical solution decay, while weak scalar perturbations of the gravitational wave critical solution also decay. A dynamical systems picture then suggests the existence of a codimension-2 attractor. We find numerical evidence for this attractor by evolving mixed initial data and fine-tuning both an overall amplitude and the relative strength of the two fields.

Text
2209.08404 - Accepted Manuscript
Download (2MB)
Text
PhysRevD.106.104044 - Version of Record
Restricted to Repository staff only
Request a copy

More information

Accepted/In Press date: 23 October 2022
e-pub ahead of print date: 22 November 2022
Additional Information: Publisher Copyright: © 2022 American Physical Society.

Identifiers

Local EPrints ID: 473821
URI: http://eprints.soton.ac.uk/id/eprint/473821
ISSN: 2470-0010
PURE UUID: 45ebcb67-3336-4373-89a1-7c1f8332834e
ORCID for Carsten Gundlach: ORCID iD orcid.org/0000-0001-9585-5375

Catalogue record

Date deposited: 01 Feb 2023 17:33
Last modified: 17 Mar 2024 02:51

Export record

Altmetrics

Contributors

Author: Bernardo Porto Veronese

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×