English

Thermal wind from hot accretion flows at large radii

High Energy Astrophysical Phenomena 2018-01-24 v1 Astrophysics of Galaxies

Abstract

We study slowly rotating accretion flow at parsec and sub-parsec scale irradiated by a low luminosity active galactic nuclei. We take into account the Compton heating, photoionization heating by the central X-rays. The bremsstrahlung cooling, recombination and line cooling are also included. We find that due to the Compton heating, wind can be thermally driven. The power of wind is in the range (106103)LEdd(10^{-6}-10^{-3}) L_{\rm Edd}, with LEddL_{\rm Edd} being the Eddington luminosity. The mass flux of wind is in the range (0.011)M˙Edd(0.01-1) \dot M_{\rm Edd} (M˙Edd=LEdd/0.1c2\dot M_{\rm Edd}= L_{\rm Edd}/0.1c^2 is the Eddington accretion rate, cc is speed of light). We define the wind generation efficiency as ϵ=PW/M˙BHc2\epsilon = P_W/\dot {M}_{\rm BH}c^2, with PWP_W being wind power, M˙BH\dot M_{\rm BH} being the mass accretion rate onto the black hole. ϵ\epsilon lies in the rage 1041.1810^{-4}-1.18. Wind production efficiency decreases with increasing mass accretion rate. The possible role of the thermally driven wind in the active galactic feedback is briefly discussed.

Keywords

Cite

@article{arxiv.1801.01616,
  title  = {Thermal wind from hot accretion flows at large radii},
  author = {De-Fu Bu and Xiao-Hong Yang},
  journal= {arXiv preprint arXiv:1801.01616},
  year   = {2018}
}

Comments

9 pages, 6 figures, accepted by MNRAS

R2 v1 2026-06-22T23:37:03.328Z