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THE SUPERCRITICAL PILE MODEL FOR GAMMA-RAY BURSTS: SPECTRO-TEMPORAL PROPERTIES

机译:伽马射线爆破的超临界桩模型:时空特性

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摘要

We present the spectral and temporal radiative signatures expected within the "supercritical pile" model of gamma-ray bursts (GRBs). This model is motivated by the need for a process that provides the dissipation necessary in GRBs and presents a well-defined scheme for converting the energy stored in the relativistic protons of the relativistic blast waves (RBWs) associated with GRBs into radiation; at the same time, it leads to spectra that exhibit a peak in the burst νF_ν distribution at an energy E_(peak) approx = 1 MeV in the observer's frame, in agreement with observations and largely independent of the Lorentz factor Γ of the associated relativistic outflow. Furthermore, this scheme does not require (but does not preclude) acceleration of particles at the shock other than that provided by the isotropization of the flow bulk kinetic energy in the RBW frame. In the present paper we model in detail the evolution of protons, electrons, and photons from a RBW to produce detailed spectra of the prompt GRB phase as a function of time from across a very broad range in frequency, spanning roughly 4 log Γ decades. The model spectra are in general agreement with observations and provide a means for delineating the model parameters through direct comparison with trends observed in GRB properties.
机译:我们提出了在“超临界堆”伽马射线暴(GRBs)模型内预期的光谱和时间辐射特征。该模型的动机是需要一种过程,该过程需要提供GRB所需的耗散,并提出了一种定义明确的方案,用于将与GRB相关的相对论爆炸波(RBW)的相对论质子中存储的能量转换为辐射;同时,它导致光谱在观察者的框架中以能量E_(peak)大约= 1 MeV的峰值νF_ν分布出现峰值,这与观察结果一致,并且在很大程度上与相关的相对论的洛伦兹因子Γ不相关外流。此外,除了RBW框架中的流动体积动能各向同性所提供的加速度以外,该方案不需要(但不排除)在冲击时加速粒子。在本文中,我们详细模拟了质子束,电子和光子从RBW的演化过程,以在很宽的频率范围内生成了GRB瞬态随时间变化的详细光谱,大约跨越了4 log log几十年。模型光谱与观测值基本一致,并提供了一种通过与GRB属性中观察到的趋势直接比较来描述模型参数的方法。

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