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A MODEL FOR THE INTERNAL STRUCTURE OF MOLECULAR CLOUD CORES

机译:分子云的内部结构模型

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摘要

We generalize the classic Bonnor-Ebert stability analysis of pressure-truncated, self-gravitating gas spheres to include clouds with arbitrary equations of state. A virial-theorem analysis is also used to incorporate mean magnetic fields into such structures. The results are applied to giant molecular clouds (GMCs), and to individual dense cores, with an eye to accounting for recent observations of the internal velocity-dispersion profiles of the cores in particular. We argue that GMCs and massive cores are at or near their critical mass and that in such a case the size-line width and mass-radius relations between them are only weakly dependent on their internal structures; any gas equation of state leads to essentially the same relations. We briefly consider the possibility that molecular clouds can be described by polytropic pressure-density relations (of either positive or negative index) but show that these are inconsistent with the apparent gravitational virial equilibrium, 2u + w ≈ 0, of GMCs and of massive cores. This class of models would include clouds whose nonthermal support comes entirely from Alfven wave pressure. The simplest model consistent with all the salient features of GMCs and cores is a " pure logo-trope," in which P/P_c = 1 + A ln (ρ/ρ_c). Detailed comparisons with data are made to estimate the value of A, and an excellent fit to the observed dependence of velocity dispersion on radius in cores is obtained with A approx= 0.2.
机译:我们将截断的自重气体球体的经典Bonnor-Ebert稳定性分析归纳为包含具有任意状态方程的云。病毒定理分析也用于将平均磁场合并到此类结构中。该结果适用于巨型分子云(GMC)以及单个致密核,尤其是考虑到最近对核内部速度分散分布的观察结果。我们认为,GMC和大质量核处于或接近其临界质量,在这种情况下,它们之间的尺寸线宽度和质量半径关系仅弱依赖于其内部结构;任何气体状态方程都会导致基本相同的关系。我们简要地考虑了分子云可以用多向压力密度关系(正或负指数)描述的可能性,但表明它们与GMC和块状核的表观重力病毒平衡2u + w≈0不一致。 。此类模型将包括其非热支持完全来自Alfven波压的云。与GMC和核心的所有显着特征一致的最简单模型是“纯徽标徽标”,其中P / P_c = 1 + A ln(ρ/ρ_c)。进行了与数据的详细比较,以估算A的值,并且在A大约= 0.2的情况下,可以很好地拟合观察到的速度散布对岩心半径的依赖性。

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