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首页> 外文期刊>The Astrophysical journal >IMPLICATIONS OF NEUTRON DECOUPLING IN SHORT GAMMA-RAY BURSTS
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IMPLICATIONS OF NEUTRON DECOUPLING IN SHORT GAMMA-RAY BURSTS

机译:中子去耦在短伽玛射线爆发中的意义

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Roughly half of the observed gamma-ray bursts (GRBs) may arise from the shocking of an ultrarelativistic shell of protons with the interstellar medium (ISM). Any neutrons originally present in the GRB fireball may, depending on the characteristics of the central engine, dynamically decouple as the fireball accelerates. This leads to outflow consisting of separate fast-proton and slow-neutron components. We derive detailed implications of neutron decoupling for the observed light curves of short bursts. In particular, we show that the collision of a neutron-decayed shell with a decelerating outer shell is expected to result in an observable second peak in the GRB light curve. There may also be substantial optical emission associated with such an event. Two peaked bursts arising from neutron decoupling will generally have an interpeak duration equal to the duration of the second peak. We also discuss interesting inferences about central-engine characteristics allowed by existing BATSE data and a consideration of neutron decoupling.
机译:大约一半的观测到的伽马射线爆发(GRB)可能是由于质子的超相对论质壳受到星际介质(ISM)的冲击而产生的。 GRB火球中最初存在的任何中子都可以根据中央引擎的特性在火球加速时动态解耦。这导致流出由单独的快质子和慢中子组成。我们导出中子去耦对于短脉冲观测光曲线的详细含义。特别是,我们表明,中子衰变的外壳与减速的外壳发生的碰撞预计会导致GRB光曲线中出现可观察到的第二个峰值。也可能有大量与此类事件相关的光发射。由中子去耦引起的两个峰值爆发通常具有等于第二峰值持续时间的峰间持续时间。我们还将讨论有关现有BATSE数据允许的中央发动机特性的有趣推断,以及对中子去耦的考虑。

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