论文标题
共销气体对分子云稳定性和尺寸线宽关系的测量的影响
Effects of CO-dark Gas on Measurements of Molecular Cloud Stability and the Size-Linewidth Relationship
论文作者
论文摘要
恒星在分子云中形成,因此表征分子云的物理状态是理解恒星形成过程的关键。经常使用包括病毒参数和Larson(1981)云半径,速度分散和表面密度之间的比例关系来评估云结构和稳定性。在低金属环境中观察到了与这些数量之间典型的银河关系的偏离。在这些条件下,预计没有相应CO排放的云信封中的H $ _2 $气体的数量;因此,这种“涂层”气体可能会导致观察到的云特性变化。我们得出了简单的校正,可以应用于经验团块特性(质量,半径,速度分散,表面密度和病毒参数),以说明在幂律和下落质量密度谱图之后的团块中的涂层气体。我们发现,销售气体不太可能是远离拉尔森在低金属性地区的关系的原因,但是病毒参数可能会被系统地高估。我们证明,校正涂层气体对于准确比较各种环境中分子云的动态状态和演变至关重要。
Stars form within molecular clouds, so characterizing the physical states of molecular clouds is key in understanding the process of star formation. Cloud structure and stability is frequently assessed using metrics including the virial parameter and Larson (1981) scaling relationships between cloud radius, velocity dispersion, and surface density. Departures from the typical Galactic relationships between these quantities have been observed in low-metallicity environments. The amount of H$_2$ gas in cloud envelopes without corresponding CO emission is expected to be high under these conditions; therefore, this "CO-dark" gas could plausibly be responsible for the observed variations in cloud properties. We derive simple corrections that can be applied to empirical clump properties (mass, radius, velocity dispersion, surface density, and virial parameter) to account for CO-dark gas in clumps following power-law and Plummer mass density profiles. We find that CO-dark gas is not likely to be the cause of departures from Larson's relationships in low-metallicity regions, but that virial parameters may be systematically overestimated. We demonstrate that correcting for CO-dark gas is critical for accurately comparing the dynamical state and evolution of molecular clouds across diverse environments.