论文标题
发出最大的光和延迟光学成像I型超浮肿超新星2020znr
Post maximum light and late time optical imaging polarimetry of type I superluminous supernova 2020znr
论文作者
论文摘要
在最大光(大约+34天,+288天和+289天)后,在3阶段的氢较差的超浮肿超新星2020znr上进行光学成像偏振法。在仪器和星际极化校正后,所有测量值与无效检测一致。用磁性旋转模型对光曲线进行建模表明,SN 2020ZNR具有与其他SLSNE相似的磁盘和射流参数。比较了有关SN 2017EGM和SN 20150亿的文献中讨论的最佳拟合值的比较,两个氢很差的SLSNE显示了最大光后极化的增加,这表明SN 2020ZNR具有较高的质量喷射,可能会阻止使用光学极好的偏极仪访问内部射流的几何形状。 I型SLSNE的光谱和光曲线分析提供的组合信息可能是对此类瞬变分类的有趣途径。这种方法需要扩展使用早期和晚期新测量的SLSNE极化数据样本。
Optical imaging polarimetry was conducted on the hydrogen poor superluminous supernova 2020znr during 3 phases after maximum light (approximately +34 days, +288 days and +289 days). After instrumental and interstellar polarization correction, all measurements are consistent with null-polarization detection. Modelling the light curve with a magnetar spin-down model shows that SN 2020znr has similar magnetar and ejecta parameters to other SLSNe. A comparison of the best-fit values discussed in the literature on SN 2017egm and SN 2015bn, two hydrogen poor SLSNe showing an increase of polarization after maximum light, suggests that SN 2020znr has higher mass ejecta that may prevent access to the geometry of the inner ejecta with optical polarimetry. The combined information provided by spectroscopy and light curve analysis of type I SLSNe may be an interesting avenue to categorize the polarization properties of this class of transients. This approach would require to expand the sample of SLSNe polarimetry data currently available with early and late time epochs new measurements.