ASASSN-14li: A Model Tidal Disruption Event
arXiv:1602.02824 · doi:10.3847/0004-637X/827/2/127
Abstract
ASASSN-14li is a recently-discovered tidal disruption event with an exceptionally rich data-set: spectra and lightcurves in soft X-rays, UV, optical, and radio. To understand its emission properties in all these bands, we have extended our model for post-tidal disruption accretion and photon production to estimate both soft X-ray radiation produced by the prompt accretion phase and synchrotron emission associated with the bow shock driven through an external medium by the unbound tidal debris, as well as optical and UV light. We find that fiducial values of the stellar mass () and black hole mass () yield: quantitative agreement with the optical/UV luminosity, lightcurve, and color temperature; approximate agreement with the somewhat uncertain soft X-ray spectrum and lightcurve; and quantitative agreement with the radio luminosity, spectrum and lightcurve. Equipartition analysis of the radio data implies that the radio-emitting region expands with a constant speed, and its magnitude is comparable to the speed expected for the unbound stellar ejecta. Both facts provide strong support to our model. We find that the disruption event took place in mid-September 2014. Two independent parameters, the magnitude and logarithmic radial gradient of the ambient gas density near the black hole, must be fit to the data to explain the radio emission; their inferred values are comparable to those found near both Sgr A* and the TDE candidate Swift J1644.
28 pages, revised version accepted by Ap. J
References in corpus (18)
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- A Continuum of H- to He-Rich Tidal Disruption Candidates With a Preference for E+A Galaxies
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- Six Months of Multi-Wavelength Follow-up of the Tidal Disruption Candidate ASASSN-14li and Implied TDE Rates from ASAS-SN
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- A Bright Year for Tidal Disruptions?
- Discovery of an outflow from radio observations of the tidal disruption event ASASSN-14li
- Flows of X-ray gas reveal the disruption of a star by a massive black hole
- A radio jet from the optical and x-ray bright stellar tidal disruption flare ASASSN-14li
- ASASSN-15oi: A Rapidly Evolving, Luminous Tidal Disruption Event at 216 Mpc
- Soft X-ray Temperature Tidal Disruption Events from Stars on Deep Plunging Orbits
- Measurement of the rate of stellar tidal disruption flares
- Magnetohydrodynamical simulations of a tidal disruption in general relativity
- An Ultraviolet Spectrum of the Tidal Disruption Flare ASASSN-14li
- Post-periapsis pancakes: sustenance for self-gravity in tidal disruption events
- Elliptical accretion and inefficient highly eccentric accretion and the low luminosity of stellar tidal disruption events
- Tidal disruption of a star in the Schwarzschild spacetime: relativistic effects in the return rate of debris
- Asymptotic Steady State Solution to a Bow Shock with an Infinite Mach Number
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