论文标题

新确定的紧凑型分层三重系统使用Gaia DR3

Newly identified compact hierarchical triple system candidates using Gaia DR3

论文作者

Czavalinga, Donát R., Mitnyan, Tibor, Rappaport, Saul A., Borkovits, Tamás, Gagliano, Robert, Omohundro, Mark, Kristiansen, Martti H. K., Pál, András

论文摘要

目标。我们引入了一种新颖的方式,通过利用Gaia DR3及其未来数据发行的巨大潜力来识别新的紧凑型分层三星级。我们旨在大大增加紧凑型层次三联的当前数量。方法。我们利用了来自不同天空调查的几个黯然失色的二进制目录,总计超过100万个目标,我们搜索了Gaia DR3非单一星轨道轨道溶液的周期比二进制文件的黯淡时期更长。在大多数情况下,这些解决方案应属于这些系统中三级恒星的外轨道。我们还尝试使用苔丝日食定时变化来验证一些最适合的候选人。结果。我们发现403个具有合适的Gaia轨道溶液的对象,其中27个已经是已知的三重系统。这使得我们样本中的376个新鉴定的层次三级系统候选。我们分析了外轨道偏心率的累积概率分布,发现它与基于开普勒和OGLE任务的观察结果的早期研究非常相似。我们发现在192个对象的苔丝数据中发现了可测量的非线性日食变化或第三体蚀,我们也认为这是确认的候选者。在这些内容中,我们为22种具有重采样苔丝观测值的对象的日食定时变化构建了分析光 - 旅行时间效应模型。我们将溶液中的外轨道参数与Gaia溶液中的外轨道参数进行比较,发现最可靠的轨道参数是轨道周期,而其他参数的值应谨慎使用。

Aims. We introduce a novel way to identify new compact hierarchical triple stars by exploiting the huge potential of Gaia DR3 and also its future data releases. We aim to increase the current number of compact hierarchical triples significantly. Methods. We utilize several eclipsing binary catalogs from different sky surveys totaling more than 1 million targets for which we search for Gaia DR3 Non-single Star orbital solutions with periods substantially longer than the eclipsing periods of the binaries. Those solutions in most cases should belong to outer orbits of tertiary stars in those systems. We also try to validate some of our best-suited candidates using TESS eclipse timing variations. Results. We find 403 objects with suitable Gaia orbital solutions of which 27 are already known triple systems. This makes 376 newly identified hierarchical triple system candidates in our sample. We analyze the cumulative probability distribution of the outer orbit eccentricities and find that it is very similar to the ones found by earlier studies based on the observations of the Kepler and OGLE missions. We found measurable non-linear eclipse timing variations or third-body eclipses in the TESS data for 192 objects which we also consider to be confirmed candidates. Out of these, we construct analytical light-travel time effect models for the eclipse timing variations of 22 objects with well-sampled TESS observations. We compare the outer orbital parameters from our solutions with the ones from the Gaia solutions and find that the most reliable orbital parameter is the orbital period, while the values of the other parameters should be used with caution.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源