The search for transiting planets around hot subdwarfs

Francisco J. POZUELOS, Valerie VAN GROOTEL, Antoine THUILLIER, Martín DÉVORA-PAJARES
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引用次数: 1

Abstract

The main goal of this project is to investigate star-planet interactions during the Red Giant Branch (RGB) phase. In particular, we focus on what happens to planetary systems once their host stars leave the main sequence and engulf close-in planets, presumably, perturbing the dy-namical architecture of the system. In this context, we wonder if close-in planets may survive this evolutionary phase, evolving towards a new stable configuration, or on the contrary, if these planets are destroyed and the entire system collapses. Whatever the outcome, how will this interaction alter the star and affect its subsequent evolution? Here, we search for observational evidence of transiting planets orbiting hot subdwarfs (sdBs) stars, which are direct post-RGB objects that have lost most of their envelopes. To this end, we analyze light curves from the space missions Kepler/K2, TESS, and CHEOPS to search for shallow periodic transits of close-in, previously engulfed planets or their remnants, such as the rocky cores of giant gas planets. By determining the occurrence of planets or remnants around sdB stars, we will place strong constraints on the evolution of planetary systems after the RGB phase of their host stars. This summary describes the methods, tools, and strategies used to explore the available photometric data in the search for transiting planets and establish detection limits that allow us to build planet occurrence rates around these stars.
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在热亚矮星周围寻找凌日行星
该项目的主要目标是研究红巨星分支(RGB)阶段的恒星-行星相互作用。我们特别关注的是,一旦行星系统的主恒星离开主序,吞没了靠近的行星,可能会扰乱系统的动力学结构,那么行星系统会发生什么。在这种情况下,我们想知道近地行星是否可以在这个进化阶段幸存下来,进化到一个新的稳定的结构,或者相反,如果这些行星被摧毁,整个系统崩溃。无论结果如何,这种相互作用将如何改变恒星并影响其随后的演化?在这里,我们寻找围绕热亚矮星(sdb)恒星运行的凌日行星的观测证据,这些恒星是直接的后rgb天体,已经失去了大部分的包层。为此,我们分析了开普勒/K2、TESS和CHEOPS太空任务的光曲线,以寻找近距离、先前被吞没的行星或其残余物(如巨大气体行星的岩石核心)的浅周期凌日。通过确定sdB恒星周围是否存在行星或残余物,我们将对行星系统在其主星的RGB阶段之后的演化施加强有力的约束。本摘要描述了在寻找凌日行星时用于探索可用光度数据的方法、工具和策略,并建立了探测极限,使我们能够在这些恒星周围建立行星发生率。
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来源期刊
Bulletin de la Societe Royale des Sciences de Liege
Bulletin de la Societe Royale des Sciences de Liege Multidisciplinary-Multidisciplinary
CiteScore
0.90
自引率
0.00%
发文量
11
期刊介绍: The ‘Société Royale des Sciences de Liège" (hereafter the Society) regularly publishes in its ‘Bulletin" original scientific papers in the fields of astrophysics, biochemistry, biophysics, biology, chemistry, geology, mathematics, mineralogy or physics, following peer review approval.
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