Bolometric correction factor and radiative efficiency for the super-Eddington accretion flow in tidal disruption events

arXiv:2607.01604 · astro-ph.HE · Submitted 2026-07-02 · Read on arXiv

Yongxin Wu, Erlin Qiao, Xuan Fang, Yiyang Lin, Jifeng Liu, Meng Guo

astro-ph.HE

Submitted: 2026-07-02

Comments: 9 pages, 5 figures, accepted for publication in MNRAS

License: http://creativecommons.org/licenses/by/4.0/

The gist: The estimate of the bolometric luminosity and the radiative efficiency are two key aspects for understanding the properties of the accretion flow around a supermassive black hole (BH).

Terminology

Abstract

The estimate of the bolometric luminosity and the radiative efficiency are two key aspects for understanding the properties of the accretion flow around a supermassive black hole (BH). In this paper, we focus on the estimate of the bolometric luminosity and the radiative efficiency of the early super-Eddington accretion flow in tidal disruption events (TDEs). Specifically, we first perform radiation hydrodynamic simulations of super-Eddington accretion flow in TDE environment, and then calculate the corresponding emergent spectra with the method of post processing for the simulation data. Based on the emergent spectra, we calculate the isotropic-equivalent X-ray bolometric correction factor k bol and the radiative efficiency eta of the super-Eddington accretion flow. We find that both k bol and eta are BH mass and viewing-angle dependent. k bol is in the range of about a few tens to a few thousands, and eta is in the range of about 10-3-10-1 for BH mass in the range of 10 6-7M and the viewing angle in the range of 0 o-90 o. Finally, we apply the derived k bol and eta to some specific TDEs to estimate the accreted mass during an event, which can significantly alleviate the so-called missing energy problem in TDEs.

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