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X-RAY EMISSION OF GAMMA-RAY BURSTS

机译:伽马射线爆发的X射线发射

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X-ray emission can provide a crucial diagnostic of gamma-ray bursts (GRBs). We calculate the X-ray and gamma-ray spectra of impulsive acceleration episodes related to GRB pulses. We use the synchrotron shock model (SSM) as a basis of our calculations. We show that the current data on soft-to-hard emission ratios of GRB pulse emission are in agreement with the SSM. In particular, GRB averaged pulse emission detected by Ginga is in agreement with the SSM low-energy spectra. We deduce that Ginga detected the majority of bright GRBs detectable by BATSE. These results indicate that the physical environment surrounding the GRB emission site is optically thin to X-ray photon energies for a large fraction of burst duration. We also calculate emission ratios in the Einstein, ROSAT, Satellite per Astron-omia raggi X (SAX), and HETE energy bands, and discuss how future information on simultaneous soft/ hard GRB emission can contribute to distinguishing different emission models. Two different components of X-ray emission may simultaneously exist in a fraction of GRBs. One component is clearly associated with the individual GRB pulses, and an additional component may be related to the pulse X-ray spectral upturns and/or the precursors/tails occasionally observed. We also show that a meaningful search of GRB-driven X-ray flashes in Andromeda (M31) can be carried out with existing ROSAT PSPC data and future SAX WFC observations.
机译:X射线发射可以为伽马射线暴(GRB)提供关键的诊断。我们计算与GRB脉冲相关的脉冲加速发作的X射线和伽马射线谱。我们使用同步加速器冲击模型(SSM)作为计算的基础。我们表明,当前关于GRB脉冲发射的软硬比的数据与SSM一致。特别是,由Ginga检测到的GRB平均脉冲发射与SSM低能谱一致。我们推断,Ginga可以检测到BATSE可以检测到的大多数明亮GRB。这些结果表明,GRB发射位点周围的物理环境对于X射线光子能量在光学上很薄,而且持续时间很长。我们还计算了爱因斯坦,ROSAT,每天文卫星raggi X(SAX)和HETE能带的发射率,并讨论了有关同时发生的软/硬GRB发射的信息如何有助于区分不同的发射模型。 X射线发射的两种不同成分可能同时存在于一部分GRB中。一个分量显然与各个GRB脉冲相关联,另外一个分量可能与脉冲X射线光谱上翻和/或偶尔观察到的前体/尾部有关。我们还表明,可以使用现有的ROSAT PSPC数据和将来的SAX WFC观测值,对仙女座(M31)中GRB驱动的X射线闪光进行有意义的搜索。

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