论文标题

传输光谱和年轻海王星轨道旋流的rossiter-mclaughlin测量值

Transmission spectroscopy and Rossiter-McLaughlin measurements of the young Neptune orbiting AU Mic

论文作者

Palle, E., Oshagh, M, Casasayas-Barris, N., Hirano, T., Stangret, M., Luque, R., Strachan, J., Gaidos, E., Anglada-Escude, G., Plavchan, P., Addison, B.

论文摘要

Au mic〜b是一个海王星尺寸的行星,在最近的前序列序列($ \ sim $ 20 Myr)恒星周围的8.47天轨道上,明亮(v = 8.81)m矮人au麦克风。该行星在多普勒径向速度时间序列中进行了初步检测,最近确认与苔丝任务的数据传播。 Au mic〜b可能会冷却和收缩,并且可能伴随着一个更大的行星,在外轨道上。在这里,我们在VLT上使用浓缩咖啡介绍了Au Mic〜b的过境的观察结果。我们获得了光谱的高分辨率时间序列,以测量rossiter-mclaughlin效应,并限制恒星和行星的自旋轨道对齐,并同时尝试检索地球的大气传播光谱。这些观察结果使我们能够首次研究年轻系统动态演变的早期阶段。我们应用不同的方法来得出Au mic〜b的自旋角,并且所有方法都取回了与行星与恒星旋转平面对齐的值一致的值。我们确定一个保守的自旋角$λ$值为$ -2.96^{+10.44} _ { - 10.30} $,表明AU MIC系统的行星的形成和迁移发生在磁盘中。不幸的是,尽管我们的测量很大,但恒星活动的程度阻止了我们检测到行星大气中的任何特征。实际上,我们的结果表明,在不久的将来,在活跃的年轻恒星周围最近形成的行星的传播光谱将仍然非常具有挑战性。

AU Mic~b is a Neptune size planet on a 8.47-day orbit around the nearest pre-main sequence ($\sim$20 Myr) star to the Sun, the bright (V=8.81) M dwarf AU Mic. The planet was preliminary detected in Doppler radial velocity time series and recently confirmed to be transiting with data from the TESS mission. AU Mic~b is likely to be cooling and contracting and might be accompanied by a second, more massive planet, in an outer orbit. Here, we present the observations of the transit of AU Mic~b using ESPRESSO on the VLT. We obtained a high-resolution time series of spectra to measure the Rossiter-McLaughlin effect and constrain the spin-orbit alignment of the star and planet, and simultaneously attempt to retrieve the planet's atmospheric transmission spectrum. These observations allow us to study for the first time the early phases of the dynamical evolution of young systems. We apply different methodologies to derive the spin-orbit angle of AU Mic~b, and all of them retrieve values consistent with the planet being aligned with the rotation plane of the star. We determine a conservative spin-orbit angle $λ$ value of $-2.96^{+10.44}_{-10.30}$, indicative that the formation and migration of the planets of the AU Mic system occurred within the disk. Unfortunately, and despite the large SNR of our measurements, the degree of stellar activity prevented us from detecting any features from the planetary atmosphere. In fact, our results suggest that transmission spectroscopy for recently formed planets around active young stars is going to remain very challenging, if at all possible, for the near future.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源