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SYSTEMATIC EFFECTS ON DURATION MEASUREMENTS OF GAMMA-RAY BURSTS

机译:伽马射线暴持续时间测量的系统影响

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The parameters T_(90) and T_(50) have recently been introduced as a measurement of the duration of gamma-ray bursts. We present here a description of the method of measuring T_(90) and T_(50) and its application to gamma-ray bursts observed with the Burst and Transient Source Experiment (BATSE) onboard the Compton Gamma-Ray Observatory (CGRO). We use simulated as well as observed time profiles to address some of the possible systematic effects affecting individual T_(90) (T_(50)) measurements. We show that these systematic effects do not mimic those effects that would result from time dilation if the burst sources are at distances of several Gpc. We discuss the impact of these systematic effects on the T_(90) (T_(50)) distributions for the gamma-ray bursts observed with BATSE. We distinguish between various types of T_(90) (T_(50)) distributions, and discuss the ways in which distributions observed with different experiments can vary, even though the measurements for commonly observed bursts may be the same. We then discuss the distributions observed with BATSE and compare them to those observed with other experiments.
机译:最近已引入参数T_(90)和T_(50)作为伽马射线暴持续时间的量度。我们在此介绍对测量T_(90)和T_(50)的方法及其在康普顿伽玛射线天文台(CGRO)上进行的突发和瞬态源实验(BATSE)观察到的伽玛射线暴的应用的描述。我们使用模拟的和观察到的时间曲线来解决影响单个T_(90)(T_(50))测量的一些可能的系统影响。我们表明,如果突发源在几Gpc的距离处,则这些系统性效果不会模仿那些因时间膨胀而产生的效果。我们讨论了这些系统性影响对BATSE观测到的伽马射线暴的T_(90)(T_(50))分布的影响。我们区分各种类型的T_(90)(T_(50))分布,并讨论了不同实验观察到的分布可以变化的方式,即使通常观察到的猝发的测量值可能相同。然后,我们讨论使用BATSE观察到的分布,并将其与其他实验观察到的分布进行比较。

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