论文标题

迈向LMC-II中恒星形成的多跟踪时间表。分子云的形成和破坏

Towards a multi-tracer timeline of star formation in the LMC -- II. The formation and destruction of molecular clouds

论文作者

Ward, Jacob L., Kruijssen, J. M. Diederik, Chevance, Mélanie, Kim, Jaeyeon, Longmore, Steven N.

论文摘要

与星形形成过程的各个阶段相关的时间尺度代表了我们对银河进化以及恒星和行星形成的理解中的主要未知数。这是旨在在大麦芽云(LMC)中建立恒星形成的多迹态时间表的系列文章,重点是分子云的生命周期。我们使用统计方法来确定$ t _ {\ text {co}} = 11.8^{+2.7} _ { - 2.2} $ myr的LMC中的分子云寿命。这个短时间的时间尺度与云动力学时间相似,并表明LMC中的分子云在很大程度上与银河动力学的效果相结合,并且具有内部过程的寿命。这与LMC中的原子云提供了明显的对比,其中寿命与银河系动力学时间尺度相关。另外,我们得出了分子云和HII区域共存为$ t _ {\ text {fb}} = 1.2^{+0.3} _ { - 0.2} $ myr的时间表,这意味着平均反馈速度与hii的平均反馈速度相位,该速度是12 km s $^{ - 1} $一致的velion veliion的平均反馈速度。直接使用光谱法。综上所述,这些结果表明,LMC中的分子云生命周期迅速进行,并且受内部动力学和恒星反馈的调节。最后,我们在文献中先前工作的背景下讨论了我们的测量结果,该文献报告了LMC中分子云的寿命要较长,并发现这些先前的发现是由于时间表校准中的主观选择而产生的,而我们的统计方法避免了这些发现。

The time-scales associated with various stages of the star formation process represent major unknowns in our understanding of galactic evolution, as well as of star and planet formation. This is the second paper in a series aiming to establish a multi-tracer time-line of star formation in the Large Magellanic Cloud (LMC), focusing on the lifecycle of molecular clouds. We use a statistical method to determine a molecular cloud lifetime in the LMC of $t_{\text{CO}}=11.8^{+2.7}_{-2.2}$ Myr. This short time-scale is similar to the cloud dynamical time, and suggests that molecular clouds in the LMC are largely decoupled from the effects of galactic dynamics and have lifetimes set by internal processes. This provides a clear contrast to atomic clouds in the LMC, of which the lifetimes are correlated with galactic dynamical time-scales. We additionally derive the time-scale for which molecular clouds and HII regions co-exist as $t_{\text{fb}}=1.2^{+0.3}_{-0.2}$ Myr, implying an average feedback front expansion velocity of 12 km s$^{-1}$, consistent with expansion velocities of HII regions in the LMC observed directly using optical spectroscopy. Taken together, these results imply that the molecular cloud lifecycle in the LMC proceeds rapidly and is regulated by internal dynamics and stellar feedback. We conclude by discussing our measurements in the context of previous work in the literature, which reported considerably longer lifetimes for molecular clouds in the LMC, and find that these previous findings resulted from a subjective choice in timeline calibration that is avoided by our statistical methodology.

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