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ON THE LACK OF TIME DILATION SIGNATURES IN GAMMA-RAY BURST LIGHT CURVES

机译:伽马射线爆光曲线中缺少时间稀释信号

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We examine the effects of time dilation on the temporal profiles of gamma-ray burst (GRB) pulses. By using prescriptions for the shape and evolution of prompt gamma-ray spectra, we can generate a simulated population of single-pulsed GRBs at a variety of redshifts and observe how their light curves would appear to a gamma-ray detector here on Earth. We find that the observer frame duration of individual pulses does not increase with redshift as 1 + z, which one would expect from cosmological expansion. This time dilation is masked by an opposite and often stronger effect: with increasing redshift and decreasing signal-to-noise ratio only the brightest portion of the light curve can be detected. The results of our simulation are consistent with the fact that the simple time dilation of GRB light curves has not materialized in either the Swift or Fermi detected GRBs with known redshift. We show that the measured durations and associated E iso estimates for GRBs detected near the instrument's detection threshold should be considered lower limits to the true values. Furthermore, we conclude that attempts at distinguishing between long and short GRBs, at even moderate redshifts, cannot be done based on a burst's temporal properties alone.
机译:我们检查了时间膨胀对伽马射线脉冲(GRB)脉冲的时间轮廓的影响。通过使用快速伽马射线光谱的形状和演化的处方,我们可以生成各种红移下的单脉冲GRB的模拟种群,并观察它们的光曲线对地球上的伽马射线探测器的影响。我们发现,单个脉冲的观察者帧持续时间不会随着红移增加而增加,因为1 + z是宇宙学扩展所期望的。这种时间扩展被相反的且通常更强的效果所掩盖:随着红移的增加和信噪比的降低,只能检测到光曲线的最亮部分。我们的模拟结果与以下事实一致:GRB光曲线的简单时间膨胀在Swift或Fermi检测到的已知红移GRB中均未实现。我们表明,应将在仪器检测阈值附近检测到的GRB的测量持续时间和相关的E iso估计值视为对真实值的下限。此外,我们得出的结论是,即使仅在适度的红移下,区分长GRB和短GRB的尝试也无法仅基于突发的时间属性来完成。

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