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The Musca cloud: A 6 pc-long velocity-coherent, sonic filament

机译:麝香云:6 pc长的速度相干音速细丝

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Filaments play a central role in the molecular clouds’ evolution, but their internal dynamical properties remain poorly characterized. To further explore the physical state of these structures, we have investigated the kinematic properties of the Musca cloud. We have sampled the main axis of this filamentary cloud in ~(13) CO and C ~(18) O (2–1) lines using APEX observations. The different line profiles in Musca shows that this cloud presents a continuous and quiescent velocity field along its ~ 6.5 pc of length. With an internal gas kinematics dominated by thermal motions (i.e. σ _(NT)/ c _(s) ? 1 ) and large-scale velocity gradients, these results reveal Musca as the longest velocity-coherent, sonic-like object identified so far in the interstellar medium. The transonic properties of Musca present a clear departure from the predicted supersonic velocity dispersions expected in the Larson’s velocity dispersion-size relationship, and constitute the first observational evidence of a filament fully decoupled from the turbulent regime over multi-parsec scales.
机译:细丝在分子云的进化中起着核心作用,但是它们的内部动力学特性仍然很差。为了进一步探索这些结构的物理状态,我们研究了Musca云的运动学特性。我们使用APEX观测值在〜(13)CO和C〜(18)O(2-1)线中对该丝状云的主轴进行了采样。 Musca中不同的线剖面表明,这朵云沿其6.5 pc的长度呈现出连续且静止的速度场。以内部气体运动学为主导的热运动(即σ_(NT)/ c _(s)?1)和大尺度的速度梯度,这些结果表明,Musca是迄今为止确定的最长的速度相干,类似声波的物体在星际介质中。 Musca的跨音速特性与Larson速度色散-尺寸关系中预期的超音速​​速度色散存在明显差异,并且构成了在多视差尺度上细丝与湍流状态完全解耦的第一个观察证据。

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