论文标题

超过100伽玛射线爆发的光亮度时间相关性余气

The Optical Luminosity-Time Correlation for More Than 100 Gamma-Ray Burst Afterglows

论文作者

Dainotti, M. G., Livermore, S., Kann, D. A., Li, L., Oates, S., Yi, S., Zhang, B., Gendre, B., Cenko, B., Fraija, N.

论文摘要

伽马射线爆发(GRB)是由于其全质性而引人入胜的。从子TEV能量到无线电波长,观察到它们的余辉发射。我们研究了具有光原的GRB,并利用了许多GRB光曲线(LCS)中显示的X射线平台的相似之处。我们全面地分析了所有已知的红移和光平原的GRB,主要由Neil Gehrels Swift天文台(Swift)观察到。我们拟合267个光学LC,并在102例病例中显示出高原的存在,这是迄今为止迄今最大的光静态汇编。对于具有光学和X射线高原的56个Swift GRB,我们将两个波长(t*_Opt,t*_x)的剩余框架结束时间进行比较,并得出结论,高原是T*_OPT和T*_X之间的可观的。我们还证实了高原发射结束时T*_OPT与光光度之间存在二维关系的存在,这类似于X射线中相同的亮度时间相关性(Dainotti etal。2013)。迄今为止,文献中最大的光平台样本已经证明了这种光学相关的存在。对于金GRB的子集,该光学相关性中的平方散射最小,与整个GRB样品的散射相比,散点等于52.4%。

Gamma-Ray Bursts (GRBs) are fascinating events due to their panchromatic nature. Their afterglow emission is observed from sub-TeV energies to radio wavelengths. We investigate GRBs that present an optical plateau, leveraging on the resemblance with the X-ray plateau shown in many GRB light curves (LCs). We comprehensively analyze all published GRBs with known redshifts and optical plateau observed mostly by the Neil Gehrels Swift Observatory (Swift). We fit 267 optical LCs and show the existence of the plateau in 102 cases, which is the largest compilation so far of optical plateaus. For 56 Swift GRBs with optical and X-ray plateaus, we compare the rest-frame end time at both wavelengths (T*_opt , T*_X), and conclude that the plateau is achromatic between T*_opt and T*_X. We also confirm the existence of the two-dimensional relations between T*_opt and the optical luminosity at the end of the plateau emission, which resembles the same luminosity-time correlation in X-rays (Dainotti et al. 2013). The existence of this optical correlation has been demonstrated for the largest sample of optical plateaus in the literature to date. The squared scatter in this optical correlation is smallest for the subset of the Gold GRBs with a decrease in the scatter equivalent to 52.4% when compared to the scatter of the entire GRB sample.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源