Radio emission from the unbound debris of tidal disruption events

Author:

Yalinewich A1ORCID,Steinberg E2,Piran T3,Krolik J H4

Affiliation:

1. Canadian Institute for Theoretical Astrophysics, 60 St. George St., Toronto, ON M5S 3H8, Canada

2. Columbia Astrophysics Laboratory, Columbia University, 550 West 120th Street, New York, NY 10027, USA

3. Racah Institute of Physics, the Hebrew University, 91904 Jerusalem, Israel

4. Department of Physics and Astronomy, Johns Hopkins University, Baltimore, MD 21228, USA

Abstract

ABSTRACT When a star gets too close to a supermassive black hole, it is torn apart by the tidal forces. Roughly half of the stellar mass becomes unbound and flies away at tremendous velocities – around 104 km s−1. In this work, we explore the idea that the shock produced by the interaction of the unbound debris with the ambient medium gives rise to the synchrotron radio emission observed in several tidal disruption event (TDE). We use a moving mesh numerical simulation to study the evolution of the unbound debris and the bow shock around it. We find that as the periapse distance of the star decreases, the outflow becomes faster and wider. A TDE whose periapse distance is a factor of 7 smaller than the tidal radius can account for the radio emission observed in ASASSN-14li. This model also allows us to obtain a more accurate estimate for the gas density around the centre of the host galaxy of ASASSN-14li.

Funder

National Sleep Foundation

National Aeronautics and Space Administration

European Research Council

Simons Foundation

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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