English

Analytical Model of Disk Evaporation and State Transitions in Accreting Black Holes

High Energy Astrophysical Phenomena 2022-06-24 v2

Abstract

State transitions in black hole X-ray binaries are likely caused by gas evaporation from a thin accretion disk into a hot corona. We present a height-integrated version of this process which is suitable for analytical and numerical studies. With radius rr scaled to Schwarzschild units and coronal mass accretion rate m˙c\dot{m}_c to Eddington units, the results of the model are independent of black hole mass. State transitions should thus be similar in X-ray binaries and AGN. The corona solution consists of two power-law segments separated at a break radius rb103(α/0.3)2r_b \sim10^3 \,(\alpha/0.3)^{-2}, where α\alpha is the viscosity parameter. Gas evaporates from the disk to the corona for r>rbr>r_b, and condenses back for r<rbr<r_b. At rbr_b, m˙c\dot{m}_c reaches its maximum, m˙c,max0.02(α/0.3)3\dot{m}_{c,{\rm max}} \approx 0.02\, (\alpha/0.3)^3. If at rrbr\gg r_b the thin disk accretes with m˙d<m˙c,max\dot{m}_d < \dot{m}_{c,{\rm max}} , then the disk evaporates fully before reaching rbr_b, giving the hard state. Otherwise, the disk survives at all radii, giving the thermal state. While the basic model considers only bremsstrahlung cooling and viscous heating, we also discuss a more realistic model which includes Compton cooling and direct coronal heating by energy transport from the disk. Solutions are again independent of black hole mass, and rbr_b remains unchanged. This model predicts strong coronal winds for r>rbr>r_b, and a T5×108KT\sim 5\times 10^8\,{\rm K} Compton-cooled corona for r<rbr < r_b. Two-temperature effects are ignored, but may be important at small radii.

Keywords

Cite

@article{arxiv.2204.07495,
  title  = {Analytical Model of Disk Evaporation and State Transitions in Accreting Black Holes},
  author = {Hyerin Cho and Ramesh Narayan},
  journal= {arXiv preprint arXiv:2204.07495},
  year   = {2022}
}

Comments

40 pages, 12 figures, published in ApJ