论文标题
北俄罗斯州北部的广泛湍流1
Widespread subsonic turbulence in Ophiuchus North 1
论文作者
论文摘要
超音速运动在分子云中很常见。 (子)通常检测到朝向致密的岩心和细丝的声音湍流。但是,尚不清楚(sub)在较大尺度上($ \ gtrsim $ 1〜PC)是否可以在不同环境中存在(sub)声音动作。 Ophiuchus North 1(OPH N1)位于约110 pc的距离,是最近的分子云之一,可以通过对单次望远镜的大规模映射观测值进行深入研究其湍流特性。我们进行了$^{12} $ CO($ j = 1-0 $)和C $^{18} $ O($ j = 1-0 $)成像观测值,使用紫色山脉天文台13.7 m望远镜进行OPH N1。观测值的角度分辨率为$ \ sim $ 55 \ arcsec(即0.03〜pc)。整个c $^{18} $ o发射区域的马赫数为$ \ Lessim $ 1,表明OPH N1的大规模(sub)声音湍流。基于极化测量值,我们估计,天际飞机组件的磁场强度为$ \ gtrsim $ 9〜 $μ$ g。我们推断OPH N1是全球亚alfv {é} NIC,并且主要由磁场支撑。陡峭的速度结构函数可能是由Sh〜2-27 H {\ Scriptsize II}区域的扩展或不可压缩的湍流范围引起的。我们的观察结果表明,云的令人惊讶的情况,其特征是广泛的亚音速湍流和陡峭的尺寸线宽关系。在离子中性摩擦应发挥重要作用的情况下,这种云被磁化。
Supersonic motions are common in molecular clouds. (Sub)sonic turbulence is usually detected toward dense cores and filaments. However, it remains unknown whether (sub)sonic motions at larger scales ($\gtrsim$1~pc) can be present in different environments or not. Located at a distance of about 110 pc, Ophiuchus North 1 (Oph N1) is one of the nearest molecular clouds that allows in-depth investigation of its turbulence properties by large-scale mapping observations of single-dish telescopes. We carried out the $^{12}$CO ($J=1-0$) and C$^{18}$O ($J=1-0$) imaging observations toward Oph N1 with the Purple Mountain Observatory 13.7 m telescope. The observations have an angular resolution of $\sim$55\arcsec (i.e., 0.03~pc). Most of the whole C$^{18}$O emitting regions have Mach numbers of $\lesssim$1, demonstrating the large-scale (sub)sonic turbulence across Oph N1. Based on the polarization measurements, we estimate the magnetic field strength of the plane-of-sky component to be $\gtrsim$9~$μ$G. We infer that Oph N1 is globally sub-Alfv{é}nic, and is supported against gravity mainly by the magnetic field. The steep velocity structure function can be caused by the expansion of the Sh~2-27 H{\scriptsize II} region or the dissipative range of incompressible turbulence. Our observations reveal a surprising case of clouds characterised by widespread subsonic turbulence and steep size-linewidth relationship. This cloud is magnetized where ion-neutral friction should play an important role.