论文标题
行星明星互动与精确的过境时机。 ii。 WASP-18系统中轨道衰减率的径向速度潮汐和更严格的约束
Planet-star interactions with precise transit timing. II. The radial-velocity tides and a tighter constraint on the orbital decay rate in the WASP-18 system
论文作者
论文摘要
从其发现中,WASP-18系统具有大规模的过境行星,在紧密的轨道上被确定为潮汐星星 - 潮汐相互作用研究的独特实验室。在对多普勒数据的分析中,其中包括2012年至2018年之间使用雇用/Keck-I仪器获得的五个新测量结果,我们表明,可以蒸馏出宿主恒星的行星潮汐电势之后光球的径向速度信号。它的幅度与平衡潮汐近似的理论预测和在轨道相曲线中观察到的椭圆形调制相一致。假设有一个圆形轨道,我们使用苔丝的光度时间序列来完善系统参数。通过新的基于地面的光度观察,我们将运输时机观察的跨度扩展到28年,以探测轨道周期缩短的速度。由于我们发现与恒定周期模型没有偏离,因此我们得出结论,宿主星的修改潮汐质量参数必须大于3.9x10^6,并具有95%的置信度。这一结果与对热木星人群的研究得出的结论一致,这预测潮汐耗散的效率弱了1或2个数量级。由于WASP-18系统是检测轨道衰变的主要候选者之一,因此预计进一步的时机观察将使我们在恒星内部的知识界限。
From its discovery, the WASP-18 system with its massive transiting planet on a tight orbit was identified as a unique laboratory for studies on tidal planet-star interactions. In an analysis of Doppler data, which include five new measurements obtained with the HIRES/Keck-I instrument between 2012 and 2018, we show that the radial velocity signal of the photosphere following the planetary tidal potential can be distilled for the host star. Its amplitude is in agreement with both theoretical predictions of the equilibrium tide approximation and an ellipsoidal modulation observed in an orbital phase curve. Assuming a circular orbit, we refine system parameters using photometric time series from TESS. With a new ground-based photometric observation, we extend the span of transit timing observations to 28 years in order to probe the rate of the orbital period shortening. Since we found no departure from a constant-period model, we conclude that the modified tidal quality parameter of the host star must be greater than 3.9x10^6 with 95% confidence. This result is in line with conclusions drawn from studies of the population of hot Jupiters, predicting that the efficiency of tidal dissipation is 1 or 2 orders of magnitude weaker. As the WASP-18 system is one of the prime candidates for detection of orbital decay, further timing observations are expected to push the boundaries of our knowledge on stellar interiors.