论文标题

部分可观测时空混沌系统的无模型预测

An environmental analysis of the fast transient AT2018cow and implications for its progenitor and late-time brightness

论文作者

Sun, Ning-Chen, Maund, Justyn R., Shao, Yali, Janiak, Ida A.

论文摘要

新发现的快速蓝色光学瞬变(FBOT)的性质仍然令人困惑。在本文中,我们对附近FBOT AT2018COW环境中的分子气体,电离气体和恒星种群进行了全面分析,该分子基于ALMA,VLT/MUSE和HST/WFC3观察结果。在AT2018COW附近发现了一个显着的分子浓度为6($ \ pm $ 1)$ \ times $ 10 $^6 $ $^6 $ $ m_ \ odot $,分别引起了两个活跃的星形成综合体,年龄为4 $ \ pm $ $ $ $ $ 1 MYR和$ \ bsice billysim $ 2.5 Myr。每个星形建筑群的出色质量为3 $ \ times $ 10 $^5 $ $ m_ \ odot $,并将其光电定化为H $α$亮度的巨型H II区域,甚至与30 Dor Mini-Starburst地区的巨大亮度相当。 AT2018COW在空间上与恒星形成的复合物之一是一致的。但是,它最有可能驻留在其前景中,因为它的灭绝比复合物要小得多。它的祖细胞本来可以在不同的星形成事件中形成,而相关的恒星种群的未检测会将祖细胞的年龄限制为$ \ gtrsim $ 10 MYR,而初始质量为$ \ Lessim $ 20 $ M_ \ odot $。我们进一步发现,AT2018COW的延迟亮度不太可能成为出色的物体。爆炸后,其亮度从2年略微下降到4年,最有可能源自AT2018COW本身,这是因为某些动力机制仍在这样的后期工作。

The nature of the newly discovered fast blue optical transients (FBOTs) is still puzzling astronomers. In this paper we carry out a comprehensive analysis of the molecular gas, ionized gas and stellar populations in the environment of the nearby FBOT AT2018cow based on ALMA, VLT/MUSE and HST/WFC3 observations. A prominent molecular concentration of 6 ($\pm$ 1) $\times$ 10$^6$ $M_\odot$ is found in the vicinity of AT2018cow, which has given rise to two active star-forming complexes with ages of 4 $\pm$ 1 Myr and $\lesssim$2.5 Myr, respectively. Each star-forming complex has a stellar mass of 3 $\times$ 10$^5$ $M_\odot$ and has photoionized a giant H II region with H$α$ luminosity even comparable to that of the 30 Dor mini-starburst region. AT2018cow is spatially coincident with one of the star-forming complexes; however, it is most likely to reside in its foreground since it has a much smaller extinction than the complex. Its progenitor could have been formed in a different star-forming event, and the non-detection of the associated stellar population constrains the progenitor's age to be $\gtrsim$10 Myr and initial mass to be $\lesssim$ 20 $M_\odot$. We further find the late-time brightness of AT2018cow is unlikely to be a stellar object. Its brightness has slightly declined from 2 yr to 4 yr after explosion and is most likely to originate from AT2018cow itself due to some powering mechanism still working at such late times.

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