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首页> 外文期刊>The Astrophysical Journal. Letters >Time-resolved Polarimetry of the Superluminous SN 2015bn with the Nordic Optical Telescope
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Time-resolved Polarimetry of the Superluminous SN 2015bn with the Nordic Optical Telescope

机译:与北欧光学望远镜的超亮光SN的时间分辨率偏振偏振物

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摘要

We present imaging polarimetry of the superluminous supernova SN 2015bn, obtained over nine epochs between -20 and +46 days with the Nordic Optical Telescope. This was a nearby, slowly evolving Type I superluminous supernova that has been studied extensively and for which two epochs of spectropolarimetry are also available. Based on field stars, we determine the interstellar polarization in the Galaxy to be negligible. The polarization of SN. 2015bn shows a statistically significant increase during the last epochs, confirming previous findings. Our well-sampled imaging polarimetry series allows us to determine that this increase (from similar to 0.54% to greater than or similar to 1.10%) coincides in time with rapid changes that took place in the optical spectrum. We conclude that the supernova underwent a "phase transition" at around +20 days, when the photospheric emission shifted from an outer layer, dominated by natal C and O, to a more aspherical inner core, dominated by freshly nucleosynthesized material. This two-layered model might account for the characteristic appearance and properties of Type I superluminous supernovae.
机译:我们介绍了超发光超新星SN 2015B的成像偏振测量,该超新星是在-20到+46天之间的九个时期内用北欧光学望远镜获得的。这是一颗在附近缓慢演化的I型超发光超新星,已经被广泛研究过,光谱旋光法也有两个时代。基于场星,我们确定银河系中的星际极化可以忽略不计。SN的极化。2015亿美元的数据显示,在过去的几个时期里,在统计上显著增加,证实了之前的研究结果。我们精心取样的成像旋光系列使我们能够确定,这种增加(从类似于0.54%到大于或类似于1.10%)与光谱中发生的快速变化在时间上是一致的。我们得出的结论是,超新星在+20天左右经历了一个“相变”,当时光球发射从外层(主要由natal C和O组成)转移到一个更非球面的内核(主要由新的核合成物质组成)。这种双层模型可以解释I型超发光超新星的特征外观和性质。

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