论文标题

快黄色脉动超级巨人的特性:FYPS指向缺少红色超级巨人的方式

The Properties of Fast Yellow Pulsating Supergiants: FYPS Point the Way to Missing Red Supergiants

论文作者

Dorn-Wallenstein, Trevor Z., Levesque, Emily M., Davenport, James R. A., Neugent, Kathryn F., Morris, Brett M., Bostroem, K. Azalee

论文摘要

快速黄色的脉动超级巨人(FYPS)是最近发现的一类进化的巨大脉动器。作为候选后红色超级巨人对象,以及为数不多的脉动进化巨大恒星之一,这些物体具有不可思议的潜力,可以改变我们对巨大恒星的结构和演变的理解。在这里,我们检查了通过过渡系外行星调查卫星(\ tess〜)观察到的麦芽云中126个凉爽超级巨人样品的光曲面,以识别脉动恒星。在进行质量削减并过滤污染物的物体后,我们检查了赫尔茨普朗 - 鲁塞尔(HR)图中脉动星的分布,并发现FYPS占据了一个高于$ \ log l/l_ \ odot \ odot \ gtrsim 5.0 $的区域。这种光度边界对应于最初质量为$ \ sim $ 18-20 $ m_ \ odot $的星星,与Supernovae(SNE)II-P的最庞大的红色超级祖细胞以及SNE IIB祖细胞的观察到的特性一致。该阈值与FYPS是RSG后星的情况一致。最后,我们将FYPS脉动的行为表征为HR图中其位置的函数。我们发现在较高有效温度下,在较低温度下的较高频率脉动,在中等温度下两种行为之间的过渡。 FYP的观察到的特性使它们成为未来理论研究的引人入胜的对象。

Fast yellow pulsating supergiants (FYPS) are a recently-discovered class of evolved massive pulsator. As candidate post-red supergiant objects, and one of the few classes of pulsating evolved massive stars, these objects have incredible potential to change our understanding of the structure and evolution of massive stars. Here we examine the lightcurves of a sample of 126 cool supergiants in the Magellanic Clouds observed by the Transiting Exoplanet Survey Satellite (\tess~) in order to identify pulsating stars. After making quality cuts and filtering out contaminant objects, we examine the distribution of pulsating stars in the Hertzprung-Russel (HR) diagram, and find that FYPS occupy a region above $\log L/L_\odot \gtrsim 5.0$. This luminosity boundary corresponds to stars with initial masses of $\sim$18-20 $M_\odot$, consistent with the most massive red supergiant progenitors of supernovae (SNe) II-P, as well as the observed properties of SNe IIb progenitors. This threshold is in agreement with the picture that FYPS are post-RSG stars. Finally, we characterize the behavior of FYPS pulsations as a function of their location in the HR diagram. We find low frequency pulsations at higher effective temperatures, higher frequency pulsations at lower temperatures, with a transition between the two behaviors at intermediate temperatures. The observed properties of FYPS make them fascinating objects for future theoretical study.

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