论文标题

Holismokes -III。 IA型超新星的出色阶段

HOLISMOKES -- III. Achromatic Phase of Strongly Lensed Type Ia Supernovae

论文作者

Huber, S., Suyu, S. H., Noebauer, U. M., Chan, J. H. H., Kromer, M., Sim, S. A., Sluse, D., Taubenberger, S.

论文摘要

要使用强烈的IA型超新星(LSNE IA)进行宇宙学,需要进行多个超新星图像(SN)图像之间的时间延迟测量。 SN IA光曲线的急剧上升和下降使它们有望测量时间延迟,但是微透镜会扭曲这些光曲线,因此在测量值中增加了巨大的不确定性。另一种方法是使用色曲线,在一定时间段内,由于微透明引起的不确定性被称为色质相。在这项工作中,我们详细研究了具有各种微晶构型的四种不同的SN IA模型。在大多数颜色曲线中,我们平均发现了大约三个休息框架或更长时间的出色阶段,但是在出色阶段的持续时间内(由于不同的微透镜图和滤波器组合)的扩散非常大,并且仅几天的可观阶段也可以使用。此外,对于微晶图,较低的宏观磁化和较大的微透镜的平均爱因斯坦半径,具有较长的成分阶段的时间更长。从我们的研究中,我们没有发现对模型或SN射流中的不对称性的强烈依赖。此外,我们发现三个独立的LSST颜色曲线表现出诸如极端点或在成分阶段内的转弯点之类的特征,这使它们有望在时间延迟测量中进行。这些曲线包含REST-FRAME Bands $ U $,$ G $,$ R $和$ i $的组合,为了观察它们的典型LSN IA IA RedShifts,这将是覆盖(observer-frame)$ r $,$ i $,$ z $,$ z $,$ y $,$ y $,$ y $,$ j $和$ h $的理想选择。

To use strongly lensed Type Ia supernovae (LSNe Ia) for cosmology, a time-delay measurement between the multiple supernova (SN) images is necessary. The sharp rise and decline of SN Ia light curves make them promising for measuring time delays, but microlensing can distort these light curves and therefore add large uncertainties to the measurements. An alternative approach is to use color curves where uncertainties due to microlensing are significantly reduced for a certain period of time known as the achromatic phase. In this work, we investigate in detail the achromatic phase, testing four different SN Ia models with various microlensing configurations. We find on average an achromatic phase of around three rest-frame weeks or longer for most color curves but the spread in the duration of the achromatic phase (due to different microlensing maps and filter combinations) is quite large and an achromatic phase of just a few days is also possible. Furthermore, the achromatic phase is longer for smoother microlensing maps, lower macro-magnifications and larger mean Einstein radii of microlenses. From our investigations, we do not find a strong dependency on the model or on asymmetries in the SN ejecta. Further, we find that three independent LSST color curves exhibit features such as extreme points or turning points within the achromatic phase, which make them promising for time-delay measurements. These curves contain combinations of rest-frame bands $u$, $g$, $r$, and $i$ and to observe them for typical LSN Ia redshifts, it would be ideal to cover (observer-frame) filters $r$, $i$, $z$, $y$, $J$, and $H$.

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