论文标题
Supernova SN 2020FAA- IPTF14HL看起来像?
Supernova SN 2020faa -- an iPTF14hls look-alike?
论文作者
论文摘要
我们提出了SN 2020FAA的观察结果。这种II型超新星显示出一条发光的光曲线,该曲线从最初的下降开始重新布莱恩。我们与著名的超新星IPTF14HL相关的研究进行了研究,后者在文献中受到了很多关注和多种解释,但是其本质和能源仍然未知。我们在前6个月中证明了SN 2020FAA和IPTF14HL之间的巨大相似性,并使用此比较来预测SN 2020FAA的演变,并反思IPTF14HL的早期演变较少。我们介绍和分析了我们的观察数据,主要由GRI频段中Zwicky瞬态设施的光学曲线以及一系列光谱。我们构造了色曲线,横晶光曲线,比较两个超新星的射流速度和黑体半径演变,以及更典型的II型超新星。光曲线在头6个月内与IPTF14HL的相似性具有很大的相似性,其亮度,时间尺度和颜色。 SN 2020FAA的光谱演变也是II型超新星的光谱演化,尽管它比IPTF14HL可用的时代更早地探测了时期。类似的光曲线行为暗示SN 2020FAA是新的IPTF14HL。我们现在提出了这些观察结果,以提倡后续观察,因为Supernova IPTF14HL的大部分更引人注目的演变都出现在后来,其光曲线起伏和壮观的寿命。另一方面,对于SN 2020FAA,与IPTF14HL相比,我们对爆炸时期的限制更好,并且我们能够从早期阶段对其进行频谱对其进行监视,而不是对更著名的同胞所做的。
We present observations of SN 2020faa. This Type II supernova displays a luminous light curve that started to rebrighten from an initial decline. We investigate this in relation to the famous supernova iPTF14hls, which received a lot of attention and multiple interpretations in the literature, however whose nature and source of energy still remains unknown. We demonstrate the great similarity between SN 2020faa and iPTF14hls during the first 6 months, and use this comparison both to forecast the evolution of SN 2020faa and to reflect on the less well observed early evolution of iPTF14hls. We present and analyse our observational data, consisting mainly of optical light curves from the Zwicky Transient Facility in the gri bands as well as a sequence of optical spectra. We construct colour curves, a bolometric light curve, compare ejecta-velocity and Black-body radius evolutions for the two supernovae, as well as for more typical Type II supernovae. The light curves show a great similarity with those of iPTF14hls over the first 6 months, in luminosity, timescale and colours. Also the spectral evolution of SN 2020faa is that of a Type II supernova, although it probes earlier epochs than those available for iPTF14hls. The similar light curve behaviour is suggestive of SN 2020faa being a new iPTF14hls. We present these observations now to advocate follow-up observations, since most of the more striking evolution of supernova iPTF14hls came later, with light curve undulations and a spectacular longevity. On the other hand, for SN 2020faa we have better constraints on the explosion epoch than we had for iPTF14hls, and we have been able to spectroscopically monitor it from earlier phases than was done for the more famous sibling.