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THE EFFECTS OF PURE DENSITY EVOLUTION ON THE BRIGHTNESS DISTRIBUTION OF COSMOLOGICAL GAMMA-RAY BURSTS

机译:纯密度演化对宇宙伽马射线暴亮度分布的影响

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In this work, we explore the effects of burst rate density evolution on the observed brightness distribution of cosmological gamma-ray bursts. Although the brightness distribution of gamma-ray bursts observed by the BATSE experiment has been shown to be consistent with a nonevolving source population observed to red-shifts of order unity, evolution of some form is likely to be present in the gamma-ray bursts. Additionally, nonevolving models place significant constraints on the range of observed burst luminosities, which are relaxed if evolution of the burst population is present. In this paper, three analytic forms of density evolution are examined. In general, forms of evolution with densities that increase monotonically with redshift require that the BATSE data correspond to bursts at larger redshifts, or to incorporate a wider range of burst luminosities, or both. Independent estimates of the maximum observed redshift in the BATSE data and/or the range of luminosity from which a large fraction of the observed bursts are drawn therefore allow for constraints to be placed on the amount of evolution that may be present in the burst population. Specifically, if recent measurements obtained from analysis of the BATSE duration distribution of the actual limiting redshift in the BATSE data at z_(lim) = 2 are correct, the BATSE N(P) distribution in a ∧ = 0 universe is inconsistent at a level of ~ 3 σ with nonevolving gamma-ray bursts and some form of evolution in the population is required. The sense of this required source evolution is to provide a higher density, larger luminosities, or both with increasing redshift.
机译:在这项工作中,我们探索了爆发速率密度演化对宇宙学伽马射线爆发的亮度分布的影响。尽管已证明通过BATSE实验观察到的伽马射线暴的亮度分布与观察到的无源源种群发生单位数量级的红移一致,但伽马射线暴中可能存在某种形式的演化。此外,无演化模型对观察到的猝发发光度的范围施加了显着的限制,如果存在猝发种群的进化,则放宽该模型。本文研究了密度演化的三种解析形式。通常,密度随红移而单调增加的演化形式要求BATSE数据对应于较大红移的脉冲串,或并入较宽范围的脉冲串光度,或两者兼而有之。因此,对BATSE数据中最大观测到的红移和/或从中得出大部分观测到的突发的光度范围的独立估计,可以对突发种群中可能存在的进化量施加限制。具体而言,如果通过分析z_(lim)= 2时BATSE数据中实际极限红移的BATSE持续时间分布而获得的最新测量值是正确的,则在∧= 0的宇宙中BATSE N(P)分布在某个水平上不一致需要约3σ且无伽马射线爆发和人口中某种形式的演化。这种要求的光源演变的意义是提供更高的密度,更大的发光度,或同时提供增加的红移。

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