用XRISM-Resolve探测SN 1987A中的冲击喷出物:关闭闸阀的影响

Vincenzo Sapienza, Marco Miceli, Aya Bamba, Salvatore Orlando, Shiu-Hang Lee, Shigehiro Nagataki, Masaomi Ono, Satoru Katsuda, Koji Mori, Makoto Sawada, Yukikatsu Terada, Roberta Giuffrida and Fabrizio Bocchino
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引用次数: 0

摘要

超新星(SN)1987A 被广泛认为是利用新发射的 XRISM 卫星的能力的极佳候选者。最近的研究表明,SN 1987A 的 X 射线辐射在未来几年将越来越多地来自于它的抛射体。在以前的一项研究中,我们根据最先进的磁流体动力模拟合成了XRISM-Resolve光谱,全面考察了XRISM-Resolve在识别SN 1987A中冲击喷出物特征方面的能力。然而,在卫星发射后,XRISM仪器的闸阀出现了技术问题,无法打开,从而影响了 "决心 "光谱仪的观测。在此,我们更新了我们的分析,在假设闸阀保持关闭的情况下重新评估了我们的诊断方法。我们发现,即使在仪器能力下降的情况下,通过对SN 1987A的XRISM-Resolve光谱中的线剖面进行研究,也有可能准确地确定喷出物的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing Shocked Ejecta in SN 1987A with XRISM-Resolve: The Effects of the Gate Valve Closed
Supernova (SN) 1987A is widely regarded as an excellent candidate for leveraging the capabilities of the freshly launched XRISM satellite. Recent researches indicate that the X-ray emission from SN 1987A will increasingly originate from its ejecta in the years to come. In a previous study, we thoroughly examined the proficiency of XRISM-Resolve in identifying signatures of shocked ejecta in SN 1987A, synthesizing the XRISM-Resolve spectrum based on a state-of-the-art magneto-hydrodynamic simulation. However, following the satellite’s launch, a technical issue arose with the XRISM instrument’s gate valve, which failed to open, thereby affecting observations with the Resolve spectrometer. Here, we update our analysis, reevaluating our diagnostic approach under the assumption that the gate valve remains closed. We find that, even with the reduced instrumental capabilities, it will be possible to pinpoint the ejecta contribution through the study of the line profiles in the XRISM-Resolve spectrum of SN 1987A.
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