论文标题

年轻的恒星在传播系系外行星恢复(年轻人)II:使用自组织图探索苔丝数据1-13的年轻恒星变异性

YOUNG Star detrending for Transiting Exoplanet Recovery (YOUNGSTER) II: Using Self-Organising Maps to explore young star variability in Sectors 1-13 of TESS data

论文作者

Battley, Matthew P., Armstrong, David J., Pollacco, Don

论文摘要

年轻的系外行星及其相应的宿主恒星是限制行星进化和行星巨星相互作用的时间表的引人入胜的实验室。但是,由于年轻的恒星通常比老年人更活跃,以发现更多的年轻系外行星,因此需要对年轻恒星变异性的广泛了解。在这里,Kohonen自组织地图(SOMS)用于探索从过境系外行星调查卫星(TESS)观察的第一年中存在的年轻明星变异性,其这种知识对于将来有针对性的年轻恒星进行有针对性的降解很有价值。发现该技术在将年轻的远程二进制文件和潜在的过境物体与恒星变异性分开的信号方面特别有效,本文提供了列表。测试了预训练的自组织图对已知变异性类别的影响,但发现没有苔丝的重大训练,这是具有挑战性的。还发现SOM在苔丝数据中提供了剩余系统的直观且内容丰富的概述,从而为表征光度数据集中的麻烦系统学提供了一种重要的新方法。本文代表了更广泛的年轻人计划的第一阶段,该计划将采用基于机器学习的方法来分类和针对年轻恒星的降低,以改善较小的年轻系外行星的恢复。

Young exoplanets and their corresponding host stars are fascinating laboratories for constraining the timescale of planetary evolution and planet-star interactions. However, because young stars are typically much more active than the older population, in order to discover more young exoplanets, greater knowledge of the wide array of young star variability is needed. Here Kohonen Self Organising Maps (SOMs) are used to explore young star variability present in the first year of observations from the Transiting Exoplanet Survey Satellite (TESS), with such knowledge valuable to perform targeted detrending of young stars in the future. This technique was found to be particularly effective at separating the signals of young eclipsing binaries and potential transiting objects from stellar variability, a list of which are provided in this paper. The effect of pre-training the Self-Organising Maps on known variability classes was tested, but found to be challenging without a significant training set from TESS. SOMs were also found to provide an intuitive and informative overview of leftover systematics in the TESS data, providing an important new way to characterise troublesome systematics in photometric data-sets. This paper represents the first stage of the wider YOUNGSTER program, which will use a machine-learning-based approach to classification and targeted detrending of young stars in order to improve the recovery of smaller young exoplanets.

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