邻近星系中的赫兹坪隙恒星与寻找新月期发光红色原生星

Hugo Tranin, Nadejda Blagorodnova, Viraj Karambelkar, Paul J. Groot, Steven Bloemen, Paul M. Vreeswijk, Daniëlle Pieterse, Jan van Roestel
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引用次数: 0

摘要

在主序阶段之后,质量大于2.5 M$_\odot$的恒星会迅速通过赫兹普隆间隙(Hertzsprung gap)演变为黄巨星和超巨星(YSG),然后进入红巨星分支。在邻近星系中识别YSG对于精确定位发光红新星(LRNe)--归因于恒星合并的天体物理瞬变--的祖先至关重要。在像维拉-鲁宾天文台的LSST这样广泛的瞬变观测时代,这种方法提供了一种预测和选择普通包层瞬变的新方法。本研究通过分析哈勃空间望远镜(HST)对 20Mpc 范围内星系中恒星群的光度测量来确定 YSG 候选者,从而研究 LRNe 的潜在祖先和前体。此外,我们还利用ZTF和MeerLICHT/BlackGEM来确定可能的前体,为LSST未来的观测做准备。我们编制了一个包含369个星系的样本,这些星系的HST曝光是在F475W、F555W、F606W和F814W滤光片中进行的。我们的样本包括246,573个YSG候选者,质量在3到20M_\odot$之间,并且受到各种污染物的影响,比如前景星和熄灭的主序星。用Gaiaproper运动排除前景星之后,估计前景星的污染率为1.7%,主序星的消光污染率为20%。结合我们的YSG候选星和时域星表,我们发现了几个有趣的候选星。我们强调了监测未来与YSG候选星相匹配的瞬变的重要性,以避免错过潜在的LRNe和其他罕见瞬变。LSST将改变寻找LRN原生星和前体星的游戏规则,在20 Mpc范围内发现30多万个新的YSG和100个前体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hertzsprung gap stars in nearby galaxies and the Quest for Luminous Red Novae Progenitors
After the main sequence phase, stars more massive than 2.5 M$_\odot$ rapidly evolve through the Hertzsprung gap as yellow giants and supergiants (YSG), before settling into the red giant branch. Identifying YSG in nearby galaxies is crucial for pinpointing progenitors of luminous red novae (LRNe) - astrophysical transients attributed to stellar mergers. In the era of extensive transient surveys like the Vera Rubin Observatory's LSST, this approach offers a new way to predict and select common envelope transients. This study investigates potential progenitors and precursors of LRNe by analysing Hubble Space Telescope (HST) photometry of stellar populations in galaxies within 20 Mpc to identify YSG candidates. Additionally, we use ZTF and MeerLICHT/BlackGEM to identify possible precursors, preparing for future observations by the LSST. We compiled a sample of 369 galaxies with HST exposures in the F475W, F555W, F606W, and F814W filters. We identified YSG candidates using MESA stellar evolution tracks and statistical analysis of color-magnitude diagrams (CMDs). Our sample includes 246,573 YSG candidates with masses between 3 and 20 $M_\odot$ and is affected by various contaminants, such as foreground stars and extinguished main-sequence stars. After excluding foreground stars using Gaia proper motions, contamination is estimated at 1.7\% from foreground stars and 20\% from extinction affecting main-sequence stars. Combining our YSG candidates with time-domain catalogs yielded several interesting candidates. Notably, we identified 12 LRN precursor candidates for which followup is encouraged. We highlight the importance of monitoring future transients that match YSG candidates to avoid missing potential LRNe and other rare transients. LSST will be a game changer in the search for LRN progenitors and precursors, discovering over 300,000 new YSG and 100 precursors within 20 Mpc.
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