Atypical thermonuclear supernovae from tidally crushed white dwarfs

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Abstract

Suggestive evidence has accumulated that intermediate-mass black holes (IMBHs) exist in some globular clusters. As stars diffuse in the cluster, some will inevitable wander sufficiently close to the hole that they suffer tidal disruption. An attractive feature of the IMBH hypothesis is its potential to disrupt not only solar-type stars but also compact white dwarf stars. Attention is given to the fate of white dwarfs that approach the hole close enough to be disrupted and compressed to such an extent that explosive nuclear burning may be triggered. Precise modeling of the dynamics of the encounter, coupled with a nuclear network, allow for a realistic determination of the explosive energy release, and it is argued that ignition is a natural outcome for white dwarfs of all varieties passing well within the tidal radius. Although event rates are estimated to be significantly less than the rate of normal Type Ia supernovae, such encounters may be frequent enough in globular clusters harboring an IMBH to warrant a search for this new class of supernova.

Original languageEnglish
Pages (from-to)1385-1389
Number of pages5
JournalAstrophysical Journal
Volume679
Issue number2
DOIs
StatePublished - Jun 1 2008

Keywords

  • Black hole physics
  • Globular clusters: general
  • Supernovae: general
  • White dwarfs

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