论文标题

几乎共振的行星系统WASP-148的光动力学分析:准确的传输变化和相互的轨道倾斜度

Photodynamical analysis of the nearly resonant planetary system WASP-148: Accurate transit-timing variations and mutual orbital inclination

论文作者

Almenara, J. M., Hébrard, G., Díaz, R. F., Laskar, J., Correia, A. C. M., Anderson, D. R., Boisse, I., Bonfils, X., Brown, D. J. A., Casanova, V., Cameron, A. Collier, Fernández, M., Jenkins, J. M., Kiefer, F., Étangs, A. Lecavelier des, Lissauer, J. J, Maciejewski, G., McCormac, J., Osborn, H., Pollacco, D., Ricker, G., Sánchez, J., Seager, S., Udry, S., Verilhac, D., Winn, J.

论文摘要

WASP-148是一个最近宣布的超极系统,具有至少两个巨型行星。内行星横渡其宿主之星。行星以怪异的轨道行进,靠近4:1的平均动作共振,这意味着显着的相互重力相互作用。特别是,这会导致几分钟的传输变化,这是根据地面光度法检测到的。这使WASP-148是未在没有空间光度法的情况下检测到这种现象的少数情况之一。在这里,我们提出了WASP-148的自洽模型,该模型考虑了系统中所有已知物体之间的重力相互作用。我们的分析同时符合可用的径向速度和过境光曲线。特别是,我们使用了苔丝太空望远镜保护的光度法,并在WASP-148发现公告后公开。苔丝数据证实了传输的变化,但仅与先前测量的过境时间结合使用。我们得出的系统参数与先前报告的那些人一致,并且具有显着提高的精度,包括非传输行星的质量。我们发现了两个行星的轨道平面之间存在显着的相互倾斜:i = 41.0 +6.2 -7.6 ver基于观测值的建模,尽管我们发现i = 20.8 +/- 4.6 ver当我们对强制执行长期动态稳定的模型施加了约束时。当将第三个行星添加到模型中 - 基于径向速度中的候选信号 - 行星B和C之间的相互倾斜度发生了显着变化,使溶液更接近Coplanar。我们得出的结论是,需要更多数据来建立系统的真实体系结构。如果确认了明显的相互倾向,WASP-148将成为少数几个候选非跨跨行星系统之一。我们讨论了这种未对准的可能起源。

WASP-148 is a recently announced extra-solar system harbouring at least two giant planets. The inner planet transits its host star. The planets travel on eccentric orbits and are near the 4:1 mean-motion resonance, which implies significant mutual gravitational interactions. In particular, this causes transit-timing variations of a few minutes, which were detected based on ground-based photometry. This made WASP-148 one of the few cases where such a phenomenon was detected without space-based photometry. Here, we present a self-consistent model of WASP-148 that takes into account the gravitational interactions between all known bodies in the system. Our analysis simultaneously fits the available radial velocities and transit light curves. In particular, we used the photometry secured by the TESS space telescope and made public after the WASP-148 discovery announcement. The TESS data confirm the transit-timing variations, but only in combination with previously measured transit times. The system parameters we derived agree with those previously reported and have a significantly improved precision, including the mass of the non-transiting planet. We found a significant mutual inclination between the orbital planes of the two planets: I=41.0 +6.2 -7.6 deg based on the modelling of the observations, although we found I=20.8 +/- 4.6 deg when we imposed a constraint on the model enforcing long-term dynamical stability. When a third planet was added to the model - based on a candidate signal in the radial velocity - the mutual inclination between planets b and c changed significantly allowing solutions closer to coplanar. We conclude that more data are needed to establish the true architecture of the system. If the significant mutual inclination is confirmed, WASP-148 would become one of the only few candidate non-coplanar planetary systems. We discuss possible origins for this misalignment.

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