论文标题
Neid Rossiter-McLaughlin TOI-1268B的测量:一个年轻的温暖土星,与其凉爽的宿主明星保持一致
NEID Rossiter-McLaughlin Measurement of TOI-1268b: A Young Warm Saturn Aligned with Its Cool Host Star
论文作者
论文摘要
近距离气体巨头带来了令人惊讶的恒星倾斜范围,行星轨道轴及其宿主恒星的旋转轴之间的角度。目前尚不清楚斜率是否反映了行星的动力学历史(例如,对原位形成或磁盘迁移对齐,而对高分子潮汐迁移的迁移)或其他机制(例如,原始机制(例如,原始机制)(例如,原始机制)是否在倾向分布中更重要。在这里,我们介绍了TOI-1268(TIC-142394656,$ V _ {\ rm mag} {\ sim} 10.9 $)的出色倾斜度测量,年轻的k-type矮人是托有8.2天的年轻k-type矮人。 TOI-1268的锂丰度和旋转期表明系统年龄之间的年龄($ {\ sim} 120 $ myr)和praesepe cluster($ {\ sim} 670 $ myr)。使用新委托的NEID光谱仪,我们通过径向速度(RV)和多普勒断层扫描(DT)信号的Rossiter-McLaughlin(RM)效应来限制TOI-1268的恒星斜率。两种型号的投影恒星斜率$ |λ| $的3 $σ$上限低于60 $^\ circ $。大型宿主星分离($ a/r_ \ star {\ sim} 17 $)与系统的年轻年龄相结合,使地球不太可能重新调整其宿主星。 TOI-1268的恒星斜率测量探测了一个超出潮汐重新对齐($ a/r_ \ star {\ gtrsim} 10 $)的年轻气体巨头的体系结构,并揭示了一个校准或略微失误的系统。
Close-in gas giants present a surprising range of stellar obliquity, the angle between a planet's orbital axis and its host star's spin axis. It is unclear whether the obliquities reflect the planets' dynamical history (e.g., aligned for in situ formation or disk migration versus misaligned for high-eccentricity tidal migration) or whether other mechanisms (e.g., primordial misalignment or planet-star interactions) are more important in sculpting the obliquity distribution. Here we present the stellar obliquity measurement of TOI-1268 (TIC-142394656, $V_{\rm mag} {\sim} 10.9$), a young K-type dwarf hosting an 8.2-day period, Saturn-sized planet. TOI-1268's lithium abundance and rotation period suggest the system age between the ages of Pleiades cluster (${\sim}120$ Myr) and Praesepe cluster (${\sim}670$ Myr). Using the newly commissioned NEID spectrograph, we constrain the stellar obliquity of TOI-1268 via the Rossiter-McLaughlin (RM) effect from both radial velocity (RV) and Doppler Tomography (DT) signals. The 3$σ$ upper bounds of the projected stellar obliquity $|λ|$ from both models are below 60$^\circ$. The large host star separation ($a/R_\star {\sim} 17$), combined with the system's young age, makes it unlikely that the planet has realigned its host star. The stellar obliquity measurement of TOI-1268 probes the architecture of a young gas giant beyond the reach of tidal realignment ($a/R_\star {\gtrsim} 10$) and reveals an aligned or slightly misaligned system.