论文标题
热木星在具有高宿主明星倾斜的系统中迟到的证据
Evidence for the Late Arrival of Hot Jupiters in Systems with High Host-star Obliquities
论文作者
论文摘要
已经表明,具有庞大的热恒星原始的热木星系统表现出广泛的恒星倾斜。另一方面,具有低质量的热木星系统通常具有接近零的恒星斜率。在低质量主序列中存在的热木星与对流信封之间的有效潮汐相互作用一直是这些观察结果的流行解释。如果此解释是准确的,则对齐系统应比未对准的系统更古老。同样,热木星的宿主恒星的对流信封质量应该是其倾斜度的有效预测指标。我们为热木星宿主星星提供了具有高质量的天空投影倾斜度推断的热木星宿主星。将薄的磁盘恒星种群的银河速度分散作为相对年龄的代理,我们发现,与米迪亚的倾斜相比,热木星寄主恒星比较大的木星宿主星年龄大,比米迪亚倾斜小。对于热的木星宿主星,两种种群之间的相对年龄差异比米数小的对流信封质量较小,并且在3.6- $σ$级别上很重要。我们确定恒星质量,而不是对流的包膜质量,是热木星系统中出色倾斜的最佳预测指标。对这些观察结果的最好解释是,在其父母原行星磁盘消散很久之后,许多未对齐系统中的热木星靠近其宿主恒星。观察到的年龄抵消对流膜质量的依赖性表明,潮汐重组有助于与对流信封的旋转恒星的对齐的热木星的种群。
It has been shown that hot Jupiters systems with massive, hot stellar primaries exhibit a wide range of stellar obliquities. On the other hand, hot Jupiter systems with low-mass, cool primaries often have stellar obliquities close to zero. Efficient tidal interactions between hot Jupiters and the convective envelopes present in lower-mass main sequence stars have been a popular explanation for these observations. If this explanation is accurate, then aligned systems should be older than misaligned systems. Likewise, the convective envelope mass of a hot Jupiter's host star should be an effective predictor of its obliquity. We derive homogeneous stellar parameters -- including convective envelope masses -- for hot Jupiter host stars with high-quality sky-projected obliquity inferences. Using a thin disk stellar population's Galactic velocity dispersion as a relative age proxy, we find that hot Jupiter host stars with larger-than-median obliquities are older than hot Jupiter host stars with smaller-than-median obliquities. The relative age difference between the two populations is larger for hot Jupiter host stars with smaller-than-median fractional convective envelope masses and is significant at the 3.6-$σ$ level. We identify stellar mass, not convective envelope mass, as the best predictor of stellar obliquity in hot Jupiter systems. The best explanation for these observations is that many hot Jupiters in misaligned systems arrived in the close proximity of their host stars long after their parent protoplanetary disks dissipated. The dependence of observed age offset on convective envelope mass suggests that tidal realignment contributes to the population of aligned hot Jupiters orbiting stars with convective envelopes.