Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/7108
Title: Stellar and gas dynamical model for tidal disruption events in a quiescent galaxy
Authors: Mageshwaran, T
Mangalam, A
Keywords: Accretion, Accretion disks
Black hole physics
Galaxies: kinematics and dynamics
Galaxies: nuclei
Quasars: supermassive black holes
Galaxies: stellar content
Issue Date: 1-Dec-2015
Publisher: IOP Publishing
Citation: The Astrophysical Journal, Vol. 814, No. 2, 141
Abstract: A detailed model of the tidal disruption events (TDEs) has been constructed using stellar dynamical and gas dynamical inputs that include black hole (BH) mass M•, specific orbital energy E and angular momentum J, star mass Msstarf and radius Rsstarf, and the pericenter of the star orbit rp(E, J, M•). We solved the steady state Fokker–Planck equation using the standard loss cone theory for the galactic density profile ρ (r) ∝ r−γ and stellar mass function ξ(m) where m = Msstarf/M⊙ and obtained the feeding rate of stars to the BH integrated over the phase space as Nt∝m•β, where β=- 0.3± 0.01 for M• > 107M⊙ and ~6.8 × 10−5 Yr−1 for γ = 0.7. We use this to model the in-fall rate of the disrupted debris, M (E,J, m, t) and discuss the conditions for the disk formation, finding that the accretion disk is almost always formed for the fiduciary range of the physical parameters. We also find the conditions under which the disk formed from the tidal debris of a given star with a super Eddington accretion phase. We have simulated the light curve profiles in the relevant optical g band and soft X-rays for both super and sub-Eddington accretion disks as a function of M (E,J,t) Using this, standard cosmological parameters, and mission instrument details, we predict the detectable TDE rates for various forthcoming surveys as a function of γ.
Description: Restricted Access © The American Astronomical Society http://dx.doi.org/10.1088/0004-637X/814/2/141
URI: http://prints.iiap.res.in/handle/2248/7108
ISSN: 0004-637X
Appears in Collections:IIAP Publications

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