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OPAQUE OR TRANSPARENT? A LINK BETWEEN NEUTRINO OPTICAL DEPTHS AND THE CHARACTERISTIC DURATION OF SHORT GAMMA-RAY BURSTS

机译:不透明或透明?中微子光学深度与短伽玛射线爆发特征持续时间之间的联系

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摘要

Cosmologieal gamma-ray bursts (GRBs) are thought to occur as a result of violent hypercritical accretion onto stellar mass black holes, following either core collapse in massive stars or compact binary mergers. This dichotomy may be reflected in the two classes of bursts having different durations. Dynamical calculations of the evolution of these systems are essential if one is to establish characteristic relevant timescales. We show here for the first time the result of dynamical simulations, lasting approximately 1 s, of postmerger accretion disks around black holes, using a realistic equation of state and considering neutrino emission processes. We find that the inclusion of neutrino optical depth effects produces important qualitative temporal and spatial transitions in the evolution and structure of the disk, which may directly reflect on the duration and variability of short GRBs.
机译:人们认为,宇宙恒流伽马射线爆发(GRB)是由于大质量恒星中的核坍塌或紧凑的双星合并之后,猛烈的超临界积聚到恒星质量黑洞中而导致的。这种二分法可以反映在具有不同持续时间的两类突发中。如果要建立特征性的相关时标,则对这些系统的演化进行动态计算至关重要。我们在此首次使用现实的状态方程并考虑中微子发射过程,对黑洞周围的合并后吸积盘进行了持续约1 s的动力学仿真结果。我们发现,中微子光学深度效应的纳入在磁盘的演化和结构中产生了重要的时间和空间质变,这可能直接反映了短GRB的持续时间和变异性。

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