论文标题

关于非重复快速无线电爆发的持续时间和能量之间的关系:带有钟声数据的人口普查

On the relation between duration and energy of non-repeating fast radio bursts: census with the CHIME data

论文作者

Kim, Seong Jin, Hashimoto, Tetsuya, Chen, Bo Han, Goto, Tomotsugu, Ho, Simon C. -C., Hsiao, Tiger Yu-Yang, Wong, Yi Hang Valerie, Yamasaki, Shotaro

论文摘要

据报道,固有能量与非重复快速无线电爆发(FRB)的爆发持续时间之间的相关性。如果存在,则可以使用相关性来估计持续时间的固有能量,从而为我们提供宇宙学的新距离度量。但是,这种相关性遭受了少量统计数据(68个FRB),并且没有潜在的重复种群不受污染,这可能没有这种相关性。如何将重复爆发与所有不同类型的FRB的混合物分开/排除重复爆发对于看到此属性至关重要。使用新的FRB目录(包含536个FRB)的更大样本,该方法与基于无监督的机器学习开发的新分类方法相结合,我们对该关系进行了进一步的审查。我们发现,在z <0.3时,固有能量和持续时间之间存在弱相关性,而肯德尔的tau相关系数为0.239,而显着性为0.001(统计意义),其斜率看起来与伽马射线爆发的斜率相似。在较高的红移(z> 0.3)下,这种相关性变得较弱且微不足道,这可能是由于在高Z和/或相关性的红移演化时缺乏微弱的FRB。核/FRB目录中的散射时间显示出一个有趣的趋势:它沿着这两个参数之间的能量与持续时间平面上的线性拟合获得的线变化。关系的宇宙学应用必须等待高Z处的微弱的FRB。

A correlation between the intrinsic energy and the burst duration of non-repeating fast radio bursts (FRBs) has been reported. If it exists, the correlation can be used to estimate intrinsic energy from the duration, and thus can provide us with a new distance measure for cosmology. However, the correlation suffered from small number statistics (68 FRBs) and was not free from contamination by latent repeating populations, which might not have such a correlation. How to separate/exclude the repeating bursts from the mixture of all different types of FRBs is essential to see this property. Using a much larger sample from the new FRB catalogue (containing 536 FRBs) recently released by the CHIME/FRB project, combined with a new classification method developed based on unsupervised machine learning, we carried out further scrutiny of the relation. We found that there is a weak correlation between the intrinsic energy and duration for non-repeating FRBs at z < 0.3 with Kendall's tau correlation coefficient of 0.239 and significance of 0.001 (statistically significant), whose slope looks similar to that of gamma-ray bursts. This correlation becomes weaker and insignificant at higher redshifts (z > 0.3), possibly due to the lack of the faint FRBs at high-z and/or the redshift evolution of the correlation. The scattering time in the CHIME/FRB catalogue shows an intriguing trend: it varies along the line obtained from linear fit on the energy versus duration plane between these two parameters. A possible cosmological application of the relation must wait for faint FRBs at high-z.

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