English

Generation of gravitational waves and tidal disruptions in clumpy galaxies

Astrophysics of Galaxies 2020-12-17 v2 Cosmology and Nongalactic Astrophysics High Energy Astrophysical Phenomena

Abstract

Obtaining a better understanding of intermediate-mass black holes (IMBHs) is crucial, as their properties could shed light on the origin and growth of their supermassive counterparts. Massive star-forming clumps, which are present in a large fraction of massive galaxies at zz \sim 1-3, are amongst the venues wherein IMBHs could reside. We perform a series of Fokker-Planck simulations to explore the occurrence of tidal disruption (TD) and gravitational wave (GW) events about an IMBH in a massive star-forming clump, modelling the latter so that its mass (108M10^8 \,{\rm M}_{\odot}) and effective radius (100100 pc) are consistent with the properties of both observed and simulated clumps. We find that the TD and GW event rates are in the ranges 10610^{-6}-10510^{-5} and 10810^{-8}-10710^{-7} yr1^{-1}, respectively, depending on the assumptions for the initial inner density profile of the system (ρr2\rho \propto r^{-2} or r1\propto r^{-1}) and the initial mass of the central IMBH (10510^5 or 103M10^3\,{\rm M}_{\odot}). By integrating the GW event rate over zz = 1-3, we expect that the Laser Interferometer Space Antenna will be able to detect \sim2 GW events per yr coming from these massive clumps; the intrinsic rate of TD events from these systems amounts instead to a few 10310^3 per yr, a fraction of which will be observable by, e.g. the Square Kilometre Array and the Advanced Telescope for High Energy Astrophysics. In conclusion, our results support the idea that the forthcoming GW and electromagnetic facilities may have the unprecedented opportunity of unveiling the lurking population of IMBHs.

Keywords

Cite

@article{arxiv.2011.02488,
  title  = {Generation of gravitational waves and tidal disruptions in clumpy galaxies},
  author = {Boris Pestoni and Elisa Bortolas and Pedro R. Capelo and Lucio Mayer},
  journal= {arXiv preprint arXiv:2011.02488},
  year   = {2020}
}

Comments

13 pages, 4 figures, 4 tables, added references