Tidal disruption of white dwarfs by intermediate mass black holes

Modeling ultra-close encounters between a white dwarf and a spinning, intermediate mass black hole requires a full general relativistic treatment of gravity. This paper summarizes results from such a study. Our results show that the disruption process and prompt accretion of the debris strongly depe...

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Main Authors: Bode T., Shcherbakov R.V., Haas R., Laguna P.
Format: Article
Language:English
Published: EDP Sciences 2012-12-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20123907002
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spelling doaj-623bbc158c8f4b42a9b86b43e64f57552021-08-02T20:05:59ZengEDP SciencesEPJ Web of Conferences2100-014X2012-12-01390700210.1051/epjconf/20123907002Tidal disruption of white dwarfs by intermediate mass black holesBode T.Shcherbakov R.V.Haas R.Laguna P.Modeling ultra-close encounters between a white dwarf and a spinning, intermediate mass black hole requires a full general relativistic treatment of gravity. This paper summarizes results from such a study. Our results show that the disruption process and prompt accretion of the debris strongly depend on the magnitude and orientation of the black hole spin. On the other hand, the late-time accretion onto the black hole follows the same decay, Ṁ ∝  t−5/3, estimated from Newtonian gravity disruption studies. The spectrum of the fallback material peaks in the soft X-rays and sustains Eddington luminosity for 1–3 yrs after the disruption. The orientation of the black hole spin has also a profound effect on how the outflowing debris obscures the central region. The disruption produces a burst of gravitational radiation with characteristic frequencies of ∼3.2 Hz and strain amplitudes of ∼10−18 for galactic intermediate mass black holes. http://dx.doi.org/10.1051/epjconf/20123907002
collection DOAJ
language English
format Article
sources DOAJ
author Bode T.
Shcherbakov R.V.
Haas R.
Laguna P.
spellingShingle Bode T.
Shcherbakov R.V.
Haas R.
Laguna P.
Tidal disruption of white dwarfs by intermediate mass black holes
EPJ Web of Conferences
author_facet Bode T.
Shcherbakov R.V.
Haas R.
Laguna P.
author_sort Bode T.
title Tidal disruption of white dwarfs by intermediate mass black holes
title_short Tidal disruption of white dwarfs by intermediate mass black holes
title_full Tidal disruption of white dwarfs by intermediate mass black holes
title_fullStr Tidal disruption of white dwarfs by intermediate mass black holes
title_full_unstemmed Tidal disruption of white dwarfs by intermediate mass black holes
title_sort tidal disruption of white dwarfs by intermediate mass black holes
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2012-12-01
description Modeling ultra-close encounters between a white dwarf and a spinning, intermediate mass black hole requires a full general relativistic treatment of gravity. This paper summarizes results from such a study. Our results show that the disruption process and prompt accretion of the debris strongly depend on the magnitude and orientation of the black hole spin. On the other hand, the late-time accretion onto the black hole follows the same decay, Ṁ ∝  t−5/3, estimated from Newtonian gravity disruption studies. The spectrum of the fallback material peaks in the soft X-rays and sustains Eddington luminosity for 1–3 yrs after the disruption. The orientation of the black hole spin has also a profound effect on how the outflowing debris obscures the central region. The disruption produces a burst of gravitational radiation with characteristic frequencies of ∼3.2 Hz and strain amplitudes of ∼10−18 for galactic intermediate mass black holes.
url http://dx.doi.org/10.1051/epjconf/20123907002
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