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DYNAMICS AND AFTERGLOW LIGHT CURVES OF GAMMA-RAY BURST BLAST WAVES WITH A LONG-LIVED REVERSE SHOCK

机译:反向长冲击的伽马射线爆破波的动力学和随后的光曲线

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We perform a detailed study on the dynamics of a relativistic blast wave with the presence of a long-lived reverse shock (RS). Although a short-lived RS has been widely considered, the RS is believed to be long-lived as a consequence of a stratification expected on the ejecta Lorentz factors. The existence of a long-lived RS causes the forward shock (FS) dynamics to deviate from a self-similar Blandford-McKee solution. Employing the "mechanical model" that correctly incorporates the energy conservation, we present an accurate solution for both the FS and RS dynamics. We conduct a sophisticated calculation of the afterglow emission. Adopting a Lagrangian description of the blast wave, we keep track of an adiabatic evolution of numerous shells between the FS and RS. An evolution of the electron spectrum is also followed individually for every shell. We then find the FS and RS light curves by integrating over the entire FS and RS shocked regions, respectively. Exploring a total of 20 different ejecta stratifications, we explain in detail how a stratified ejecta affects its blast wave dynamics and afterglow light curves. We show that, while the FS light curves are not sensitive to the ejecta stratifications, the RS light curves exhibit much richer features, including steep declines, plateaus, bumps, re-brightenings, and a variety of temporal decay indices. These distinctive RS features may be observable if the RS has higher values of the microphysics parameters than the FS. We discuss possible applications of our results in understanding the gamma-ray burst afterglow data.
机译:我们对存在相对长寿命的反向冲击(RS)的相对论冲击波的动力学进行了详细的研究。尽管人们广泛考虑了寿命短的RS,但由于对喷射洛伦兹因子的预期分层,因此认为RS寿命长。长期存在的RS导致前向冲击(FS)动力学偏离自相似的Blandford-McKee解决方案。利用正确结合了节能的“机械模型”,我们为FS和RS动力学提供了一种精确的解决方案。我们对余辉排放进行了精确的计算。采用爆炸波的拉格朗日描述,我们跟踪了FS和RS之间大量壳的绝热演化。对于每个壳,电子光谱的演化也被单独跟踪。然后,我们分别通过对整个FS和RS冲击区域进行积分来找到FS和RS光曲线。探索了总共20种不同的射出物分层,我们详细解释了分层的射出物如何影响其爆炸波动力学和余辉光曲线。我们显示,虽然FS光曲线对喷射层不敏感,但RS光曲线表现出更丰富的特征,包括陡峭的下降,平稳,颠簸,重新变亮以及各种时间衰减指数。如果RS的微观物理参数值比FS高,则这些独特的RS特征可能是可以观察到的。我们讨论了我们的结果在理解伽玛射线爆发余辉数据中的可能应用。

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