SIMBAD references

2017MNRAS.469.2361H - Mon. Not. R. Astron. Soc., 469, 2361-2379 (2017/August-1)

Ideal engine durations for gamma-ray-burst-jet launch.

HAMIDANI H., TAKAHASHI K., UMEDA H. and OKITA S.

Abstract (from CDS):

Aiming to study gamma-ray-burst (GRB) engine duration, we present numerical simulations to investigate collapsar jets. We consider typical explosion energy (1052 erg) but different engine durations, in the widest domain to date from 0.1 to 100 s. We employ an adaptive mesh refinement 2D hydrodynamical code. Our results show that engine duration strongly influences jet nature. We show that the efficiency of launching and collimating relativistic outflow increases with engine duration, until the intermediate engine range where it is the highest, past this point to long engine range, the trend is slightly reversed; we call this point where acceleration and collimation are the highest 'sweet spot' (∼10-30 s). Moreover, jet energy flux shows that variability is also high in this duration domain. We argue that not all engine durations can produce the collimated, relativistic and variable long GRB jets. Considering a typical progenitor and engine energy, we conclude that the ideal engine duration to reproduce a long GRB is ∼10-30 s, where the launch of relativistic, collimated and variable jets is favoured. We note that this duration domain makes a good link with a previous study suggesting that the bulk of Burst and Transient Source Experiment's long GRBs is powered by ∼10-20 s collapsar engines.

Abstract Copyright: © 2017 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): hydrodynamics - relativistic processes - shock waves - gamma-ray burst: general - supernovae: general - ISM: jets and outflows - ISM: jets and outflows

Simbad objects: 5

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