论文标题

盖亚时代的太阳能社区

The Solar Neighborhood in the Age of Gaia

论文作者

Zucker, Catherine, Alves, João, Goodman, Alyssa, Meingast, Stefan, Galli, Phillip

论文摘要

我们对恒星的形成以及我们对行星形成的一切所了解的大多数都来自对太阳邻居的观察到太阳的2 kpc。在2018年之前,将2D天空转变为恒星分布的忠实3D物理图片所需的准确距离测量值,而构成它们的星际物质则很少。在这里,我们对盖亚任务的数据自2018年以来的数据揭示了以前看不见的,而且经常出乎意料的3D分布在太阳能街区的气体,灰尘和年轻恒星的3D分布。我们总结了新的基于新的灭绝技术如何产生3D防尘图以及映射的密度结构如何为测量盖亚和VLBI的年轻恒星的3D位置提供关键背景。我们讨论了盖亚(Gaia)中有测量径向速度和适当运动的年轻恒星的子集如何用于恢复3D云运动并表征各个恒星形成区域的内部动力学。我们回顾了新识别​​的群集与年轻恒星流与它们进化的分子星际介质之间的关系。这些气体和恒星的3D分布和3D运动的组合提供了前所未有的数据,以与模拟进行比较,并在较大的银河环境中重新理解了我们对本地恒星形成的理解。在盖亚时代,我们对太阳能社区的新3D观点表明,曾经被认为是孤立的星形区域通常以千帕斯克尺度连接,从而使我们重新考虑了在星系中安排气体和年轻恒星的模型。

Most of what we know about the formation of stars, and essentially everything we know about the formation of planets, comes from observations of our solar neighborhood within 2 kpc of the Sun. Before 2018, accurate distance measurements needed to turn the 2D Sky into a faithful 3D physical picture of the distribution of stars, and the interstellar matter that forms them, were few and far between. Here, we offer a holistic review of how, since 2018, data from the Gaia mission are revealing previously unseen and often unexpected 3D distributions of gas, dust, and young stars in the solar neighborhood. We summarize how new extinction-based techniques yield 3D dust maps and how the density structure mapped out offers key context for measuring young stars' 3D positions from Gaia and VLBI. We discuss how a subset of young stars in Gaia with measured radial velocities and proper motions is being used to recover 3D cloud motion and characterize the internal dynamics of individual star-forming regions. We review relationships between newly-identified clusters and streams of young stars and the molecular interstellar medium from which they evolve. The combination of these measures of gas and stars' 3D distribution and 3D motions provides unprecedented data for comparison with simulations and reframes our understanding of local star formation in a larger Galactic context. This new 3D view of our solar neighborhood in the age of Gaia shows that star-forming regions once thought to be isolated are often connected on kiloparsec scales, causing us to reconsider models for the arrangement of gas and young stars in galaxies.

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