论文标题

IBN Supernova类型2019KBJ- IBN Supernova祖细胞的多样性指示

The Type Ibn Supernova 2019kbj -- Indications for Diversity in Type Ibn Supernova Progenitors

论文作者

Ben-Ami, Tom, Arcavi, Iair, Newsome, Megan, Farah, Joseph, Pellegrino, Craig, Terreran, Giacomo, Burke, Jamison, Hosseinzadeh, Griffin, McCully, Curtis, Hiramatsu, Daichi, Gonzalez, Estefania Padilla, Howell, D. Andrew

论文摘要

IBN型超新星(SNE)是一类罕见的恒星爆炸,其祖细胞系统尚未确定。我们介绍和分析IBN SN类型2019KBJ的观察结果,并建模其光曲线,以限制其祖细胞和爆炸参数。 SN 2019KBJ在峰值后的第一个月显示了大约恒定的温度,表明电源(可能是偶然的材料相互作用),该电源使连续发射的热量保持在〜15,000k。确实,我们发现NI56的放射性衰减不利,是降压光曲线的唯一动力来源。另一方面,放射性衰减 +偶然物材料(CSM)相互作用模型确实可以很好地再现辐射仪。由于稳定的质量损失,拟合更喜欢均匀密度的CSM壳,而不是CSM,类似于其他类型的IBN SNE中所见。均匀密度的CSM壳模型需要约0.1个太阳能Ni56和〜1个太阳能总弹出物,以重现光曲线。 SN 2019KBJ以这种方式与其他类型的IBN SN不同的物理参数(SN 2019UO)有所不同,为此,得出了较低的Ni56质量和较大的弹出质量的数量级。这表明SN IBN祖细胞系统和爆炸中可能的多样性。

Type Ibn supernovae (SNe) are a rare class of stellar explosions whose progenitor systems are not yet well determined. We present and analyze observations of the Type Ibn SN 2019kbj, and model its light curve in order to constrain its progenitor and explosion parameters. SN 2019kbj shows roughly constant temperature during the first month after peak, indicating a power source (likely circumstellar material interaction) that keeps the continuum emission hot at ~15,000K. Indeed, we find that the radioactive decay of Ni56 is disfavored as the sole power source of the bolometric light curve. A radioactive decay + circumstellar-material (CSM) interaction model, on the other hand, does reproduce the bolometric emission well. The fits prefer a uniform-density CSM shell rather than CSM due to a steady mass-loss wind, similar to what is seen in other Type Ibn SNe. The uniform-density CSM shell model requires ~0.1 solar masses of Ni56 and ~1 solar mass of total ejecta to reproduce the light curve. SN 2019kbj differs in this manner from another Type Ibn SN with derived physical parameters, SN 2019uo, for which an order of magnitude lower Ni56 mass and larger ejecta mass were derived. This points towards a possible diversity in SN Ibn progenitor systems and explosions.

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