论文标题
恒星形成现场RAFGL 5085:是枢轴丝系统的完美候选人吗?
Star-forming site RAFGL 5085: Is a perfect candidate of hub-filament system ?
论文作者
论文摘要
为了研究恒星形成过程,我们提出了一项多波长的研究,该研究与分子流出,HII区域和近红外群集有关,该研究与分子流出相关。 12、250、350和500 $μ$ m时的连续图像显示了一个中心区域(具有m $ _ {\ rm clump} $ $ \ sim $ \ sim $ 225 m $ _ {\ odot} $),周围有五个Parsec-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale-Scale揭示了一个Hub-Filarment System(HFS)。 In the {\it Herschel} column density ($N({\rm{H}}_{2})$) map, filaments are identified with higher aspect ratios (length/diameter) and lower $N({\rm{H}}_{2})$ values ($\sim$0.1--2.4 $\times$10$^{21}$ cm $^{ - 2} $),而中央集线器的纵横比较低,$ n({\ rm {h}} _ {2})$ values($ \ sim $ 3.5---7.0 $ \ times $ 10 $^$ 10 $^{21} $^{21} $ CM $^{ - 2} $)。中央集线器在{\ it Herschel}温度图中显示[19,22.5] 〜k的温度范围,并以恒星形成的签名(包括无线电连续体发射)观察到。 JCMT $^{13} $ CO(j = 3--2)线数据证实了HFS及其轮毂的存在,其枢纽是带有较高的MACH数量和较低热压力比的超音速和非热运动。在$^{13} $ CO位置速度图中,似乎观察到沿细丝的速度梯度似乎观察到了,这表明RAFGL 5085 HFS中的气体流量以及团块填充方案的适用性。
To investigate the star formation process, we present a multi-wavelength study of a massive star-forming site RAFGL 5085, which has been associated with the molecular outflow, HII region, and near-infrared cluster. The continuum images at 12, 250, 350, and 500 $μ$m show a central region (having M$_{\rm clump}$ $\sim$225 M$_{\odot}$) surrounded by five parsec-scale filaments, revealing a hub-filament system (HFS). In the {\it Herschel} column density ($N({\rm{H}}_{2})$) map, filaments are identified with higher aspect ratios (length/diameter) and lower $N({\rm{H}}_{2})$ values ($\sim$0.1--2.4 $\times$10$^{21}$ cm$^{-2}$), while the central hub is found with a lower aspect ratio and higher $N({\rm{H}}_{2})$ values ($\sim$3.5--7.0 $\times$10$^{21}$ cm$^{-2}$). The central hub displays a temperature range of [19, 22.5]~K in the {\it Herschel} temperature map, and is observed with signatures of star formation (including radio continuum emission). The JCMT $^{13}$CO(J= 3--2) line data confirm the presence of the HFS and its hub is traced with supersonic and non-thermal motions having higher Mach number and lower thermal to non-thermal pressure ratio. In the $^{13}$CO position-velocity diagrams, velocity gradients along the filaments toward the HFS appear to be observed, suggesting the gas flow in the RAFGL 5085 HFS and the applicability of the clump-fed scenario.