Boson stars and solitons confined in a Minkowski box
Boson stars and solitons confined in a Minkowski box
We consider the static charged black hole bomb system, originally designed for a (uncharged) rotating superradiant system by Press and Teukolsky. A charged scalar field confined in a Minkowski cavity with a Maxwell gauge field has a quantized spectrum of normal modes that can fit inside the box. Back-reacting non-linearly these normal modes, we find the hairy solitons, a.k.a boson stars (depending on the chosen U(1) gauge), of the theory. The scalar condensate is totally confined inside the box and, outside it, we have the Reissner-Nordström solution. The Israel junction conditions at the box surface layer determine the stress tensor that the box must have to confine the scalar hair. Some of these horizonless hairy solutions exist for any value of the scalar field charge and not only above the natural critical charges of the theory (namely, the critical charges for the onset of the near-horizon and superradiant instabilities of the Reissner-Nordström black hole). However, the ground state solutions have a non-trivial intricate phase diagram with a main and a secondary family of solitons (some with a Chandrasekhar mass limit but others without) and there are a third and a fourth critical scalar field charges where the soliton spectra changes radically. Most of these intricate properties are not captured by a higher order perturbative analysis of the problem where we simply back-react a normal mode of the system.
Black Holes, Classical Theories of Gravity
Campos Dias, Oscar
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Rodgers, Paul William
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Masachs Gonzalez, Ramon
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23 April 2021
Campos Dias, Oscar
f01a8d9b-9597-4c32-9226-53a6e5500a54
Rodgers, Paul William
458881c5-fb65-497c-8163-8bedfadc55e1
Masachs Gonzalez, Ramon
59aea1a5-1389-43c2-9ffc-5691d8717763
Campos Dias, Oscar, Rodgers, Paul William and Masachs Gonzalez, Ramon
(2021)
Boson stars and solitons confined in a Minkowski box.
Journal of High Energy Physics, 2021 (236), [236].
(doi:10.1007/JHEP04(2021)236).
Abstract
We consider the static charged black hole bomb system, originally designed for a (uncharged) rotating superradiant system by Press and Teukolsky. A charged scalar field confined in a Minkowski cavity with a Maxwell gauge field has a quantized spectrum of normal modes that can fit inside the box. Back-reacting non-linearly these normal modes, we find the hairy solitons, a.k.a boson stars (depending on the chosen U(1) gauge), of the theory. The scalar condensate is totally confined inside the box and, outside it, we have the Reissner-Nordström solution. The Israel junction conditions at the box surface layer determine the stress tensor that the box must have to confine the scalar hair. Some of these horizonless hairy solutions exist for any value of the scalar field charge and not only above the natural critical charges of the theory (namely, the critical charges for the onset of the near-horizon and superradiant instabilities of the Reissner-Nordström black hole). However, the ground state solutions have a non-trivial intricate phase diagram with a main and a secondary family of solitons (some with a Chandrasekhar mass limit but others without) and there are a third and a fourth critical scalar field charges where the soliton spectra changes radically. Most of these intricate properties are not captured by a higher order perturbative analysis of the problem where we simply back-react a normal mode of the system.
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Dias2021_Article_BosonStarsAndSolitonsConfinedI
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Accepted/In Press date: 22 March 2021
Published date: 23 April 2021
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© 2021, The Author(s).
Keywords:
Black Holes, Classical Theories of Gravity
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Local EPrints ID: 449444
URI: http://eprints.soton.ac.uk/id/eprint/449444
ISSN: 1029-8479
PURE UUID: d0a52b4a-604b-4d66-ac93-1a81a57efed8
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Date deposited: 01 Jun 2021 16:30
Last modified: 17 Mar 2024 03:35
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Author:
Paul William Rodgers
Author:
Ramon Masachs Gonzalez
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