论文标题
SN 2020BQJ:一种IBN类型的超新星,持久高原高原
SN 2020bqj: a Type Ibn supernova with a long lasting peak plateau
论文作者
论文摘要
上下文:类型IBN超新星是一类罕见的剥离信封超新星,与富含氦的CSM相互作用。 SNE IBN的大多数报告显示,快速曲面和星形宿主表现出令人惊讶的同质性。目的:我们介绍了SN 2020BQJ(ZTF20AALRQBU)的发现和研究,这是一个长期峰值高原,持续40天的SN IBN,由微弱的低质量星系托管。我们旨在使用广泛的数据集解释其特殊属性。方法:我们将SN 2020BQJ的演变与文献中的SNE IBN进行了比较。我们与不同的供电机理模型拟合辐射测量和多波段灯曲面。结果:SN 2020BQJ的上升时间,峰值和光谱特征与大多数SNE IBN一致,但是SN基于其明亮,持久的峰值高原和低宿主质量的明显离群值。我们通过建模表明,灯罩可以通过SN射流和密集CSM的相互作用的冲击加热来主要供电。奇特的IBN SN 2011HW类型是SN 2020BQJ的近似类似物,表明了类似的祖细胞和CSM场景。在这种情况下,在发光蓝色变量和紧凑型狼射线恒星之间的过渡阶段中,非常庞大的祖细胞恒星经历了核心折叠,由于残留氢的存在,与正常的SNE IBN相比,与正常的SNE IBN相比,在富含不透明度的密集的氦气中,其不透明度升高。这种情况与SN 2020BQJ的观察到的属性和建模结果一致。结论:SN 2020BQJ是基于其光谱特征的过渡性SN IBN/IIN的引人注目的例子,而且还基于其灯曲线,宿主星系性能和推断的祖细胞特性。与SN 2011HW的强烈相似性表明,该子类可能是恒星进化阶段祖细胞的结果,该祖先与常规SNE IBN的祖细胞不同。
Context: Type Ibn supernovae are a rare class of stripped envelope supernovae interacting with a helium-rich CSM. The majority of the SNe Ibn reported display a surprising homogeneity in their fast lightcurves and starforming hosts. Aims: We present the discovery and study of SN 2020bqj (ZTF20aalrqbu), a SN Ibn with a long-duration peak plateau lasting 40 days and hosted by a faint low-mass galaxy. We aim to explain its peculiar properties using an extensive data set. Methods: We compare the evolution of SN 2020bqj with SNe Ibn from the literature. We fit the bolometric and multi-band lightcurves with different powering mechanism models. Results: The risetime, peak magnitude and spectral features of SN 2020bqj are consistent with those of most SNe Ibn, but the SN is a clear outlier based on its bright, long-lasting peak plateau and low host mass. We show through modeling that the lightcurve can be powered predominantly by shock heating from the interaction of the SN ejecta and a dense CSM. The peculiar Type Ibn SN 2011hw is a close analog to SN 2020bqj, suggesting a similar progenitor and CSM scenario. In this scenario a very massive progenitor star in the transitional phase between a luminous blue variable and a compact Wolf-Rayet star undergoes core-collapse, embedded in a dense helium-rich CSM with an elevated opacity compared to normal SNe Ibn, due to the presence of residual hydrogen. This scenario is consistent with the observed properties of SN 2020bqj and the modeling results. Conclusions: SN 2020bqj is a compelling example of a transitional SN Ibn/IIn based on not only its spectral features, but also its lightcurve, host galaxy properties and the inferred progenitor properties. The strong similarity with SN 2011hw suggests this subclass may be the result of a progenitor in a stellar evolution phase that is distinct from those of progenitors of regular SNe Ibn.