论文标题

来自过境系外行星调查卫星任务的北斗星星人

A Population of Dipper Stars from the Transiting Exoplanet Survey Satellite Mission

论文作者

Capistrant, Benjamin K., Soares-Furtado, Melinda, Vanderburg, Andrew, Kounkel, Marina, Rappaport, Saul A., Omohundro, Mark, Powell, Brian P., Gagliano, Robert, Jacobs, Thomas, Kostov, Veselin B., Kristiansen, Martti H., LaCourse, Daryll M., Schmitt, Allan R., Schwengeler, Hans Martin, Terentev, Ivan A.

论文摘要

北斗星恒星是年轻恒星物体的分类,其光曲线表现出变暗的变异性,亮度下降了10-50%,这可能是由于杂物磁盘材料引起的。这种可变性可以是周期性的,准周期性的或上的。通过基于地面和空间的光度测量,在年轻的恒星关联中发现了北斗星。我们介绍了迄今为止最大的北斗星恒星收藏集的检测和表征:293个北斗星恒星,包括234名新的北斗星候选人。我们已经生成了这些目标的目录,其中还包括年轻的恒星变量,这些变量主要表现出爆发样的变异性和对称变异性(相等的部分爆发和浸入)。目录源的总数为414。这些可变源是在苔丝光曲线的视觉调查中发现的,其中观察到类似浸入的变异性。我们发现北斗七星<5 MYR的典型年龄,年龄分布达到〜2 Myr,并且分布的尾巴延伸至20岁以上的年龄。无论年龄多大,我们的北斗星候选人倾向于表现出红外过量,这表明存在磁盘。苔丝现在正在观察富含年轻恒星关联的黄道平面,因此我们预计苔丝数据集中会有更多发现。更大的北斗星样品将增强光曲线形态和北斗星年龄的人口普查统计。

Dipper stars are a classification of young stellar objects that exhibit dimming variability in their light curves, dropping in brightness by 10-50%, likely induced by occultations due to circumstellar disk material. This variability can be periodic, quasi-periodic, or aperiodic. Dipper stars have been discovered in young stellar associations via ground-based and space-based photometric surveys. We present the detection and characterization of the largest collection of dipper stars to date: 293 dipper stars, including 234 new dipper candidates. We have produced a catalog of these targets, which also includes young stellar variables that exhibit predominately bursting-like variability and symmetric variability (equal parts bursting and dipping). The total number of catalog sources is 414. These variable sources were found in a visual survey of TESS light curves, where dipping-like variability was observed. We found a typical age among our dipper sources of <5 Myr, with the age distribution peaking at ~2 Myr, and a tail of the distribution extending to ages older than 20 Myr. Regardless of the age, our dipper candidates tend to exhibit infrared excess, which is indicative of the presence of disks. TESS is now observing the ecliptic plane, which is rich in young stellar associations, so we anticipate many more discoveries in the TESS dataset. A larger sample of dipper stars would enhance the census statistics of light curve morphologies and dipper ages.

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