论文标题

宽线型IC SN 2020BVC:离轴伽玛射线的签名突发余辉

The broad-line type Ic SN 2020bvc: signatures of an off-axis gamma-ray burst afterglow

论文作者

Izzo, L., Auchettl, K., Hjorth, J., De Colle, F., Gall, C., Angus, C. R., Raimundo, S. I., Ramirez-Ruiz, E.

论文摘要

长持续的伽马射线爆发(GRB)几乎与IC-BL型的非常有活力的,宽外线的超新星(SNE)无关。虽然伽马射线发射以狭窄的喷气式发射,但SN散发出各向同性的辐射。因此,已经假设某些与GRB相关的SN IC-BL是由内引擎(例如Off-轴GRB或cho住的喷头)的事件引起的。在这里,我们介绍了附近的观察结果($ d = 120 $ mpc)SN 2020BVC(ASAS-SN 20BS),该SN 2020BVC支持这种情况。 \ textit {swift} UVOT观察结果显示出早期下降(爆炸后两天),而光谱将其归类为具有很高膨胀速度的SN IC-BL($ \ $ \ $ 70,000 km/s),类似于与GRB 171205a相关的SN 2017IUK Jet-Cocoon发射。此外,\ textIt {swift} X射线望远镜和\ textit {cxo} X射线观测器检测到X射线发射仅在SN和衰减后的三天,并且可以归因于余波组件。茧和X射线发射都是喷气动力GRB的签名。就SN 2020BVC而言,我们发现喷气机不符合轴($ \ $ \ $ 23度),这也表明,缺乏早期($ \ $ \ 1美元)X射线排放,这解释了为什么未检测到迅速检测到的GRB或在档案数据中。这些观察结果表明,SN 2020BVC是通过其相关的SN发射检测到的第一个孤儿GRB。

Long-duration gamma-ray bursts (GRBs) are almost unequivocally associated with very energetic, broad-lined supernovae (SNe) of Type Ic-BL. While the gamma-ray emission is emitted in narrow jets, the SN emits radiation isotropically. Therefore, some SN Ic-BL not associated with GRBs have been hypothesized to arise from events with inner engines such as off-axis GRBs or choked jets. Here we present observations of the nearby ($d = 120$ Mpc) SN 2020bvc (ASAS-SN 20bs) which support this scenario. \textit{Swift} UVOT observations reveal an early decline (up to two days after explosion) while optical spectra classify it as a SN Ic-BL with very high expansion velocities ($\approx$ 70,000 km/s), similar to that found for the jet-cocoon emission in SN 2017iuk associated with GRB 171205A. Moreover, \textit{Swift} X-Ray Telescope and \textit{CXO} X-ray Observatory detected X-ray emission only three days after the SN and decaying onwards, which can be ascribed to an afterglow component. Cocoon and X-ray emission are both signatures of jet-powered GRBs. In the case of SN 2020bvc, we find that the jet is off axis (by $\approx$ 23 degrees), as also indicated by the lack of early ($\approx 1$ day) X-ray emission which explains why no coincident GRB was detected promptly or in archival data. These observations suggest that SN 2020bvc is the first orphan GRB detected through its associated SN emission.

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