论文标题
年轻行星系统中的自旋轨道对准和磁性活性
Spin-orbit alignment and magnetic activity in the young planetary system AU Mic
论文作者
论文摘要
我们在最近检测到的年轻行星au mic b的转运期间,使用CFHT的螺旋仪器在CFHT上提出了高分辨率的近红外光谱观测,并提供了来自IRTF的ISHELL的光谱数据。我们在Stokes V配置文件中检测到Zeeman签名,并测量$ \ Overline {B} _ \ Ell = 46.3 \ PM0.7 $ 〜G的平均纵向磁场。旋转调制的磁斑可能会导致该场的长期变化,坡度为$ d {b_ \ ell}/dt = -108.7 \ pm7.7.7 \ pm7.7$ ~~/d。我们应用互相关技术来测量线轮廓并通过CCF模板匹配获得径向速度。我们发现径向速度与$ b_ \ ell $之间存在经验线性关系,这使我们能够估计径向速度变化,这些变化通过旋转调制的旋转调制而导致AU MIC与Spirou连续监测的五个小时。我们使用MCMC对经典的Rossiter-McLaughlin效应进行校正后的径向速度进行建模,以对模型参数的后验分布进行采样。该分析表明,Au Mic B的轨道是前进的,并与恒星旋转轴与天空旋转的旋转轨道倾斜度为$λ= 0^{+18} _ { - 15} $度。 Au mic b的对齐轨道表明它在原月经磁盘中形成,该磁盘演变成围绕Au MIC的当前碎屑盘。
We present high resolution near-infrared spectropolarimetric observations using the SPIRou instrument at CFHT during a transit of the recently detected young planet AU Mic b, with supporting spectroscopic data from iSHELL at IRTF. We detect Zeeman signatures in the Stokes V profiles, and measure a mean longitudinal magnetic field of $\overline{B}_\ell=46.3\pm0.7$~G. Rotationally modulated magnetic spots likely cause long-term variations of the field with a slope of $d{B_\ell}/dt=-108.7\pm7.7$~G/d. We apply the cross-correlation technique to measure line profiles and obtain radial velocities through CCF template matching. We find an empirical linear relationship between radial velocity and $B_\ell$, which allows us to estimate the radial velocity variations which stellar activity induces through rotational modulation of spots for the five hours of continuous monitoring of AU Mic with SPIRou. We model the corrected radial velocities for the classical Rossiter-McLaughlin effect, using MCMC to sample the posterior distribution of the model parameters. This analysis shows that the orbit of AU Mic b is prograde and aligned with the stellar rotation axis with a sky-projected spin-orbit obliquity of $λ=0^{+18}_{-15}$ degrees. The aligned orbit of AU Mic b indicates that it formed in the protoplanetary disk that evolved to the current debris disk around AU Mic.