Simulation of a compact object with outflows moving through a gaseous background

Author:

Li Xinyu12ORCID,Chang Philip3,Levin Yuri45,Matzner Christopher D6,Armitage Philip J57

Affiliation:

1. Canadian Institute for Theoretical Astrophysics, 60 St George St, Toronto, ON M5R 2M8, Canada

2. Perimeter Institute for Theoretical Physics, 31 Caroline Street North, Waterloo, ON N2L 2Y5, Canada

3. Department of Physics, University of Wisconsin-Milwaukee, 3135 North Maryland Avenue, Milwaukee, WI 53211, USA

4. Center for Theoretical Physics, Department of Physics, Columbia University, New York, NY 10027, USA

5. Center for Computational Astrophysics, Flatiron Institute, New York, NY 10010, USA

6. Department of Astronomy and Astrophysics, University of Toronto, 50 St George Street, Toronto, ON M5S 3H4, Canada

7. Department of Physics and Astronomy, Stony Brook University, Stony Brook, NY 11790, USA

Abstract

ABSTRACT A compact object moving relative to surrounding gas accretes material and perturbs the density of gas in its vicinity. In the classical picture of Bondi–Hoyle–Lyttleton accretion, the perturbation takes the form of an overdense wake behind the object, which exerts a dynamical friction drag. We use hydrodynamic simulations to investigate how the accretion rate and strength of dynamical friction are modified by the presence of outflow from the compact object. We show that the destruction of the wake by an outflow reduces dynamical friction, and reverses its sign when the outflow is strong enough, in good quantitative agreement with analytic calculations. For a strong isotropic outflow, the outcome on scales that we have simulated is a negative dynamical friction, i.e. net acceleration. For jet-like outflows driven by reprocessed accretion, both the rate of accretion and the magnitude of dynamical friction drop for more powerful jets. The accretion rate is strongly intermittent when the jet points to the same direction as the motion of the compact object. The dynamical effects of outflows may be important for the evolution of compact objects during the common envelope phase of binary systems, and for accreting compact objects and massive stars encountering active galactic nucleus discs.

Funder

National Aeronautics and Space Administration

Simons Foundation

Government of Canada

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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