年轻的系外行星系统TOI-4562:确认系统中存在第三个天体

V. Fermiano, R. K. Saito, V. D. Ivanov, C. Caceres, L. A. Almeida, J. Aires, J. C. Beamin, D. Minniti, T. Ferreira, L. Andrade, B. W. Borges, L. de Almeida, F. Jablonski, W. Schlindwein
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引用次数: 0

摘要

年轻的行星系统是研究(外)行星形成早期阶段的一个机会,因为引力相互作用尚未显著改变系统的初始构造。TOI-4562b是一颗高度偏心的温带木星类似物,围绕着一颗年龄小于700亿年的年轻F7V-typestar运行,其轨道周期为$P_{orb}\sim 225$天,而它的轨道周期为$P_{orb}\sim 225$天。\sim 225$天,偏心率为$e=0.76$,是已知原地形成的最大系外行星之一。我们利用巴西米纳斯吉拉斯州皮科多斯迪亚斯天文台(OPD/LNA)的0.6米蔡司望远镜观测到了TOI-4562 b的新凌日,并将我们的数据与凌日系外行星巡天卫星(TESS)和档案数据相结合,目的是改进这个有趣系统的星历表。新星历表的$O-C$图与围绕TOI-4562的外层轨道上存在一颗巨行星相吻合。TOI-4562 c是一颗质量为$M=5.77 M_{Jup}$,轨道周期为$P_{orb}= 3990$天,半长轴为$a = 5.219$ AU的行星。我们报告发现了TOI-4562 c,这是迄今为止通过瞬时变异(TTV)方法发现的轨道周期最长的系外行星。从其年轻的年龄和高偏心率来看,TOI-4562 系统正处于剧烈的动力学变化过程中,因此是研究行星系统形成和演化的主要目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The young exoplanetary system TOI-4562: Confirming the presence of a third body in the system
Young planetary systems represent an opportunity to investigate the early stages of (exo)planetary formation because the gravitational interactions have not yet significantly changed the initial configuration of the system. TOI-4562 b is a highly eccentric temperate Jupiter analogue orbiting a young F7V-type star of $<700$ Myr in age with an orbital period of $P_{orb} \sim 225$ days and an eccentricity of $e=0.76$, and is one of the largest known exoplanets to have formed in situ. We observed a new transit of TOI-4562 b using the 0.6-m Zeiss telescope at the Pico dos Dias Observatory (OPD/LNA) in Minas Gerais, Brazil, and combine our data with Transiting Exoplanet Survey Satellite (TESS) and archive data, with the aim being to improve the ephemerides of this interesting system. The $O-C$ diagram for the new ephemeris is consistent with the presence of a giant planet in an outer orbit around TOI-4562. TOI-4562 c is a planet with a mass of $M=5.77 M_{Jup}$, an orbital period of $P_{orb}= 3990$ days, and a semi-major axis of $a = 5.219$ AU. We report the discovery of TOI-4562 c, the exoplanet with the longest orbital period discovered to date via the transit timing variation (TTV) method. The TOI-4562 system is in the process of violent evolution with intense dynamical changes - judging by its young age and high eccentricity - and is therefore a prime target for studies of formation and evolution of planetary systems.
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