English

Binary Black Hole Formation and Mergings

Astrophysics 2007-05-23 v1 General Relativity and Quantum Cosmology

Abstract

The formation and evolution of binary black holes (BH) is studied using the modern evolutionary scenario for very massive stars with high mass loss (Vanbeveren et al. 1998). Main sequence stars with masses M>35MM>35 M_\odot are assumed to form a BH in the end of their nuclear evolution. The mass of BH formed is parametrized as Mbh=kbh×MSNM_{bh}=k_{bh}\times M_{SN}, where MSNM_{SN} is the mass of the pre-supernova star taken from evolutionary calculations, kbh1k_{bh}\le 1. The possibility is explored that a newly formed BH acquires a kick velocity 0-250 km/s. Binary BH are found to merge within the Hubble time at an appreciable rate only for non-zero kick velocities. We calculate the galactic merging rates of binary BH systems, their detection rate by the initial laser interferometers, and the distributions of merging binary BH over orbital eccentricities at different frequencies. The distribution of angles between BH spins and the orbital angular momentum is also presented.

Keywords

Cite

@article{arxiv.astro-ph/9903193,
  title  = {Binary Black Hole Formation and Mergings},
  author = {K. A. Postnov and M. E. Prokhorov},
  journal= {arXiv preprint arXiv:astro-ph/9903193},
  year   = {2007}
}

Comments

6 pages, LATEX, moriond.sty, 5 eps-figures, the talk given at XXXIVthe Rencontres de Moriond "Gravitational waves and experimental Gravity", January 23-30, 1999

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