论文标题

GK VIR的日食时序变化:在圆形轨道中可能类似木星的行星的证据

Eclipse timing variation of GK Vir: evidence of a possible Jupiter-like planet in a circumbinary orbit

论文作者

Almeida, Leonardo A., Pereira, Elielson S., Borges, Gislene M., Damineli, Augusto, Michtchenko, Tatiana A., Viswanathan, Gandhi M.

论文摘要

日食时序变化分析已成为发现围绕二进制系统的行星的强大方法。我们应用了此技术来研究GK VIR的日食。该系统是轨道后二进制二进制的轨道时期,轨道周期为8.26 h。在这里,我们介绍了2013年至2020年之间获得的10个新的日食。我们使用线性胚层计算了O-C图,并以环状行为验证了清晰的轨道周期变化(OPV)。我们研究了这种变化是否可以通过Applegate机制,Apsidal运动或轻行程(LTT)效应来解释。我们发现,Applegate机制几乎无法用其当前的理论描述来解释OPV。我们使用不同的方法获得的APSidal运动比LTT效应的可能性较小。我们表明,具有一个环形体的LTT效应是OPV的最有可能的原因,这是由于第三体的轨道稳定性增强的。 LTT最佳解决方案为外体提供了〜24年的轨道周期。在外体和内部二进制之间的共晶型假设下,我们在GK Vir周围获得了一个类似木星的行星。在这种情况下,地球是迄今为止发现的最长的轨道时期之一,具有完整的观察基线。但是,由于GK VIR的观​​察基线的基线小于O-C图中发现的周期的两倍,因此必须将LTT溶液作为初步。

Eclipse timing variation analysis has become a powerful method to discover planets around binary systems. We applied this technique to investigate the eclipse times of GK Vir. This system is a post-common envelope binary with an orbital period of 8.26 h. Here, we present 10 new eclipse times obtained between 2013 and 2020. We calculated the O-C diagram using a linear ephemeris and verified a clear orbital period variation (OPV) with a cyclic behavior. We investigated if this variation could be explained by the Applegate mechanism, the apsidal motion, or the light travel time (LTT) effect. We found that the Applegate mechanism would hardly explain the OPV with its current theoretical description. We obtained using different approaches that the apsidal motion is a less likely explanation than the LTT effect. We showed that the LTT effect with one circumbinary body is the most likely cause for the OPV, which was reinforced by the orbital stability of the third body. The LTT best solution provided an orbital period of ~24 yr for the outer body. Under the assumption of coplanarity between the external body and the inner binary, we obtained a Jupiter-like planet around the GK Vir. In this scenario, the planet has one of the longest orbital periods, with a full observational baseline, discovered so far. However, as the observational baseline of GK Vir is smaller than twice the period found in the O-C diagram, the LTT solution must be taken as preliminary.

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