论文标题

z <0.02内77型IIN超新星的宿主环境的H-alpha调查

An H-alpha survey of the host environments of 77 type IIn supernovae within z<0.02

论文作者

Ransome, C. L., Mawson, S. M. Habergham, Darnley, M. J., James, P. A., Percival, S. M.

论文摘要

类型IIN超新星(SNE \,IIN)是一种罕见且高度异构的SN类,其中Sn extea与现有的偶然媒体(CSM)相互作用。先前的研究发现,SN位置与H $α$排放的关联和SN类的祖细胞群体的关联。在本文中,我们介绍了Sne \ iin的最大环境研究。我们使用连续体减去H $α$图像分析了77型IIN超新星的H $α$环境。我们使用像素统计技术,归一化累积排名(NCR),将SN像素与H $α$发射相关联。我们发现我们的77 sne \ iin不遵循H $α$排放。这与SNE \,IIN,发光蓝色变量(LBV)的拟议祖细胞不一致,因为LBV是高质量恒星,经历了巨大的情节质量损失。但是,NCR值的一个子集遵循H $α$排放,表明质量高的祖细胞。这表明可能有多个祖先路径,其中$ \ sim $ 60 \%具有非零NCR值,其分布与高质量祖细胞(例如LBVS)和$ \ sim $ 40 \%\%\%与H $α$排放无关。我们讨论了SNE \,IIN的可能祖细胞途径,特别是对于零NCR值种群。我们还根据h $α$和$ r'$ - 频段通量调查了SNE在其主机中的径向分布。

Type IIn supernovae (SNe\,IIn) are an uncommon and highly heterogeneous class of SN where the SN ejecta interact with pre-existing circumstellar media (CSM). Previous studies have found a mass ladder in terms of the association of the SN location with H$α$ emission and the progenitor masses of SN classes. In this paper, we present the largest environmental study of SNe\,IIn. We analyse the H$α$ environments of 77 type IIn supernovae using continuum subtracted H$α$ images. We use the pixel statistics technique, normalised cumulative ranking (NCR), to associate SN pixels with H$α$ emission. We find that our 77 SNe\,IIn do not follow the H$α$ emission. This is not consistent with the proposed progenitors of SNe\,IIn, luminous blue variables (LBVs) as LBVs are high mass stars that undergo dramatic episodic mass loss. However, a subset of the NCR values follow the H$α$ emission, suggesting a population of high mass progenitors. This suggests there may be multiple progenitor paths with $\sim$60\% having non-zero NCR values with a distribution consistent with high mass progenitors such as LBVs and $\sim$40\% of these SNe not being associated with H$α$ emission. We discuss the possible progenitor routes of SNe\,IIn, especially for the zero NCR value population. We also investigate the radial distribution of the SNe in their hosts in terms of H$α$ and $r'$-band flux.

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