论文标题
外来型IC宽衬套Supernova SN 2018GEP:模糊了超新星和快速光学瞬变之间的界线
The Exotic Type Ic Broad-Lined Supernova SN 2018gep: Blurring the Line Between Supernovae and Fast Optical Transients
论文作者
论文摘要
在过去的十年中,已经发现了许多迅速发展的瞬变,这些瞬态不容易被传统的超新星模型解释。我们在此类对象SN 2018GEP上介绍了光学和紫外线数据,该数据在最大光周围表现出了快速上升,并且在最大的光周围呈现了大多数毫无特色的蓝色连续体,并且在整个观察结果中都保留了大量的蓝色磁通量,从而发展出更典型的SN IC-BL的广泛特征。蓝色多余的近距离通量最为明显,比其他剥离的信封超新星更明亮4个幅度,但在早期的光学G $ -R颜色中也可见。它的快速上升时间$ t _ {\ rm上升,v} \ Lessim 6.2 \ pm 0.8 $ DAME将其直接放在新兴的快速发展发光瞬变或快速蓝色光学瞬变的类别中。峰值绝对幅度为m $ _r = -19.49 \ pm 0.23 $ mag,它处于SNE IC-BL的上升时间和峰值分布的极端。只有其他SN IC-BL具有类似的属性IPTF16ASU,为此,获得的重要早期和紫外线数据较少。我们表明,对象2018GEP和IPTF16ASU具有相似的光度和光谱特性,并且它们总体上与SNE IC-BL和SNE IC-BL和快速发展的瞬变具有许多相似之处。我们获得了SN 2018GEP主机星系的IFU观察结果,并为其得出了许多属性。我们表明,SN 2018GEP和IPTF16ASU的派生宿主星系性能总体与SNE IC-BL和GRB/SNE样品一致,同时处于观察到的快速发展的瞬态样品的极端边缘。这些光度观察与简单的SN IC-BL模型一致,该模型在早期具有额外的能量注入形式,该模型驱动观察到的快速,蓝色上升,我们推测这种额外的电源可能会推断到更广泛的快速发展的瞬态样品。
In the last decade a number of rapidly evolving transients have been discovered that are not easily explained by traditional supernovae models. We present optical and UV data on onee such object, SN 2018gep, that displayed a fast rise with a mostly featureless blue continuum around maximum light, and evolved to develop broad features more typical of a SN Ic-bl while retaining significant amounts of blue flux throughout its observations. The blue excess is most evident in its near-UV flux that is over 4 magnitudes brighter than other stripped envelope supernovae, but also visible in optical g$-$r colors at early times. Its fast rise time of $t_{\rm rise,V} \lesssim 6.2 \pm 0.8$ days puts it squarely in the emerging class of Fast Evolving Luminous Transients, or Fast Blue Optical Transients. With a peak absolute magnitude of M$_r=-19.49 \pm 0.23 $ mag it is on the extreme end of both the rise time and peak magnitude distribution for SNe Ic-bl. Only one other SN Ic-bl has similar properties, iPTF16asu, for which less of the important early time and UV data have been obtained. We show that the objects SNe 2018gep and iPTF16asu have similar photometric and spectroscopic properties and that they overall share many similarities with both SNe Ic-bl and Fast Evolving Transients. We obtain IFU observations of the SN 2018gep host galaxy and derive a number of properties for it. We show that the derived host galaxy properties for both SN 2018gep and iPTF16asu are overall consistent with the SNe Ic-bl and GRB/SNe sample while being on the extreme edge of the observed Fast Evolving Transient sample. These photometric observations are consistent with a simple SN Ic-bl model that has an additional form of energy injection at early times that drives the observed rapid, blue rise, and we speculate that this additional power source may extrapolate to the broader Fast Evolving Transient sample.