论文标题

在伽马射线爆发领域中寻求新的相关性 - 超新星连接

The quest for new correlations in the realm of the Gamma-Ray Burst -- Supernova connection

论文作者

Dainotti, M. G., De Simone, B., Khadir, M. I., Kawaguchi, K., Moriya, T. J., Takiwaki, T., Tominaga, N., Gangopadhyay, A.

论文摘要

伽马射线爆发(GRB)是非常有活力的宇宙瞬变。长GRB通常与IB/C型超新星(SNE)有关,我们称它们为GRB-SNE。由于仅在低红移时观察到给定的GRB的相关SN,因此当我们考虑在高红移时无法观察到的本质上微弱的来源时,可能存在可能的选择效果。因此,由于涉及的变量的仪器选择效应和红移的演变,探索grb和SN参数之间可能的关系很重要。到目前为止,仅在未考虑余辉(Ag)的情况下,仅检查了针对SNE IB/C属性的GRB提示属性。这项工作调查了GRB及时和AG以及相关SN属性之间的关系。我们研究了SN和GRB可观察物之间的91个二维相关性,以纠正选择偏见和进化效应。由于这项研究,我们发现了与皮尔逊相关系数> 0.50的新相关性的提示,并且偶然地绘制的概率<0.05。这种相关性是在GRB光原发射结束时的光度与SN的静止峰值时间之间的相关性。根据这一关系,最亮的光原植物伴随着最大的峰值时间。对于选择偏见和红移演化,对此相关性进行了校正,并可能为与GRB-SNE连接相关的天体物理模型提供新的约束。

Gamma-Ray Bursts (GRBs) are very energetic cosmological transients. Long GRBs are usually associated with Type Ib/c Supernovae (SNe), and we refer to them as GRB-SNe. Since the associated SN for a given GRB is observed only at low redshift, a possible selection effect exists when we consider intrinsically faint sources which cannot be observed at high redshift. Thus, it is important to explore the possible relationships between GRB and SN parameters after these have been corrected for astrophysical biases due to the instrumental selection effects and redshift evolution of the variables involved. So far, only GRB prompt emission properties have been checked against the SNe Ib/c properties without considering the afterglow (AG). This work investigates the existence of relationships among GRB's prompt and AG and associated SN properties. We investigate 91 bidimensional correlations among the SN and GRB observables before and after their correction for selection biases and evolutionary effects. As a result of this investigation, we find hints of a new correlation with a Pearson correlation coefficient > 0.50 and a probability of being drawn by chance < 0.05. This correlation is between the luminosity at the end of the GRB optical plateau emission and the rest-frame peak time of the SN. According to this relation, the brightest optical plateaus are accompanied by the largest peak times. This correlation is corrected for selection biases and redshift evolution and may provide new constraints for the astrophysical models associated with the GRB-SNe connection.

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