English

Structure and Instability of the Ionization Fronts around Moving Black Holes

Astrophysics of Galaxies 2020-06-16 v2 High Energy Astrophysical Phenomena

Abstract

In this paper we focus on understanding the physical processes that lead to stable or unstable ionization fronts (I-fronts) observed in simulations of moving black holes (BHs). The front instability may trigger bursts of gas accretion, rendering the BH significantly more luminous than at steady-state. We perform a series of idealized three dimensional radiation hydrodynamics simulations resolving the I-fronts around BHs of mass MBHM_\mathrm{BH} and velocity vv_\infty accreting from a medium of density nHn_\mathrm{H}. The I-front, with radius RIR_\mathrm{I}, transitions from D-type to R-type as the BH velocity becomes larger than a critical value vR40km/sv_\mathrm{R}\sim 40\,\mathrm{km/s}. The D-type front is preceded by a bow-shock of thickness ΔRI\Delta R_\mathrm{I} that decreases as vv_\infty approaches vRv_\mathrm{R}. We find that both D-type and R-type fronts can be unstable given the following two conditions: i) for D-type fronts the shell thickness must be ΔRI/RI<0.05\Delta R_\mathrm{I}/R_\mathrm{I}<0.05 (i.e., v20km/sv_\infty \gtrsim 20\,\mathrm{km/s}.), while no similar restriction holds for R-type fronts; ii) the temperature jump across the I-front must be TII/TI>3T_\mathrm{II}/T_\mathrm{I}>3. This second condition is satisfied if TI<5000KT_\mathrm{I}<5000\,\mathrm{K} or if nHMBH106Mcm3n_\mathrm{H}\,M_\mathrm{BH} \gtrsim 10^6\,M_\odot\,\mathrm{cm^{-3}}. Due to X-ray pre-heating typically TI104KT_\mathrm{I} \sim 10^4\,\mathrm{K}, unless the D-type shell is optically thick to X-rays, which also happens when nHMBHn_\mathrm{H}\,M_\mathrm{BH} is greater than a metallicity-dependent critical value. We thus conclude that I-fronts around BHs are unstable only for relatively massive BHs moving trough very dense molecular clouds. We briefly discuss the observational consequences of the X-ray luminosity bursts likely associated with this instability.

Keywords

Cite

@article{arxiv.2003.05625,
  title  = {Structure and Instability of the Ionization Fronts around Moving Black Holes},
  author = {Kazuyuki Sugimura and Massimo Ricotti},
  journal= {arXiv preprint arXiv:2003.05625},
  year   = {2020}
}

Comments

14 pages, 9 figures, published in MNRAS, movie available at https://www.youtube.com/watch?v=pj1dy-0AM0o