论文标题

$β$ pictoris移动组的动态追溯年龄

Dynamical traceback age of the $β$ Pictoris moving group

论文作者

Miret-Roig, N., Galli, P. A. B., Brandner, W., Bouy, H., Barrado, D., Olivares, J., Antoja, T., Romero-Gómez, M., Figueras, F., Lillo-Box, J.

论文摘要

上下文:$β$ Pictoris移动组是太阳能社区中最著名的年轻协会之一,众所周知,有几个成员可以举办杂物,行星和彗星。用精度测量其年龄是基本的,研究几个天体物理过程,例如行星形成和圆盘进化,这些过程非常依赖年龄。 目的:我们旨在确定$β$ pictoris移动组的精确而准确的动态追溯年龄。 方法:我们的样本将极其精确的Gaia DR2天文测量与以均匀方式测量的地面径向速度相结合。我们使用算法的更新版本来确定动态年龄。新方法考虑了协会的空间和运动协方差矩阵的强大估计,以改善样本选择过程并执行追溯分析。 结果:我们估计,对于$β$ pictoris移动组的$ 18.5 _ { - 2.4}^{+2.0} $ myr的动态年龄。我们调查了缔合的空间结构,并提出了恒星核心的存在更加集中。我们还为81个$β$ pic的成员提供精确的径向速度测量,其中包括十颗恒星,并首先确定了它们的径向速度。 结论:我们的动态追溯年龄是以前的回溯年龄估计的三倍,更重要的是,首次将追溯年龄与其他动态锂消耗边界和等化年龄的最新估计进行调和。由于出色的天文学和光谱精度,样本的均匀性以及对二进制和成员的详细分析,这是可能的。

Context: The $β$ Pictoris moving group is one of the most well-known young associations in the solar neighbourhood and several members are known to host circumstellar discs, planets, and comets. Measuring its age with precision is basic to study several astrophysical processes such as planet formation and disc evolution which are strongly age dependent. Aims: We aim to determine a precise and accurate dynamical traceback age for the $β$ Pictoris moving group. Methods: Our sample combines the extremely precise Gaia DR2 astrometry with ground-based radial velocities measured in an homogeneous manner. We use an updated version of our algorithm to determine dynamical ages. The new approach takes into account a robust estimate of the spatial and kinematic covariance matrices of the association to improve the sample selection process and to perform the traceback analysis. Results: We estimate a dynamical age of $18.5_{-2.4}^{+2.0}$ Myr for the $β$ Pictoris moving group. We investigated the spatial substructure of the association at birth time and we propose the existence of a core of stars more concentrated. We also provide precise radial velocity measurements for 81 members of $β$ Pic, including ten stars with the first determination of their radial velocities. Conclusions: Our dynamical traceback age is three times more precise than previous traceback age estimates and, more important, for the first time, reconciles the traceback age with the most recent estimates of other dynamical, lithium depletion boundary, and isochronal ages. This has been possible thanks to the excellent astrometric and spectroscopic precisions, the homogeneity of our sample, and the detailed analysis of binaries and membership.

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