The Formation Rate and Luminosity Function of Fast Radio Bursts

J. H. Chen, X. D. Jia, X. F. Dong and F. Y. Wang
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Abstract

Fast radio bursts (FRBs) are millisecond-duration flashes with unknown origins. Their formation rate is crucial for unveiling physical origins. However, the luminosity and formation rate are degenerate when directly fitting the redshift distribution of FRBs. In contrast to previous forward-fitting methods, we use Lynden-Bell’s c− method to derive the luminosity function and formation rate of FRBs without any assumptions. Using the nonrepeating FRBs from the first Canadian Hydrogen Intensity Mapping Experiment FRB catalog, we find a relatively strong luminosity evolution, and luminosity function can be fitted by a broken power-law model with a break at 1.33 × 1041 erg s−1. The formation rate declines rapidly as (1 + z)−4.9±0.3 with a local rate of 1.13 × 104 Gpc−3 yr−1. This monotonic decrease is similar to the rate of short gamma-ray bursts. After comparing this function with the star formation rate and stellar mass density, we conclude that the old populations, including neutron stars and black holes, are closely related to the origins of FRBs.
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快速射电暴的形成率和光度函数
快速射电暴(FRB)是一种持续时间为毫秒的闪光,其起源不明。它们的形成率对于揭示物理起源至关重要。然而,在直接拟合 FRB 的红移分布时,光度和形成率是退化的。与以往的正向拟合方法不同,我们使用林登-贝尔的 c- 方法来推导 FRB 的光度函数和形成率,而无需任何假设。利用第一份加拿大氢强度绘图实验FRB目录中的非重复FRB,我们发现其光度演化相对较强,光度函数可以用一个断裂的幂律模型来拟合,断裂点为1.33 × 1041 erg s-1。形成率在(1+z)-4.9±0.3时迅速下降,本地形成率为1.13 × 104 Gpc-3 yr-1。这种单调的下降与短伽马射线暴的速率相似。在将这一函数与恒星形成率和恒星质量密度进行比较之后,我们得出结论:包括中子星和黑洞在内的古老种群与FRB的起源密切相关。
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