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首页> 外文期刊>The Astrophysical journal >THE NATURE OF THE DENSE CORE POPULATION IN THE PIPE NEBULA: CORE AND CLOUD KINEMATICS FROM C~(18)O OBSERVATIONS
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THE NATURE OF THE DENSE CORE POPULATION IN THE PIPE NEBULA: CORE AND CLOUD KINEMATICS FROM C~(18)O OBSERVATIONS

机译:管道中密度核种群的性质:C〜(18)O观测的核和云运动学

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We present molecular line observations of 94 dark cloud cores identified in the Pipe nebula through near-IR extinction mapping. Using the Arizona Radio Observatory 12 m telescope, we obtained spectra of these cores in the J = 1-0 transition of C~(18)O. We used the measured core parameters, T_R~*, Δv, v_(isr) radius, and mass, to explore the internal kinematics of the cores, as well as their radial motions through the larger molecular cloud. We find that the vast majority of the dark extinction cores are true cloud cores, rather than the superposition of unrelated filaments. While we identify no significant correlations between the cores' internal gas motions and their other physical parameters, we identify spatially correlated radial velocity variations that outline two main kinematic components of the cloud. The largest is a 15 pc long filament that is surprisingly narrow both in spatial dimensions and in radial velocity. Beginning in the "Stem" of the Pipe, this filament displays uniformly small C~(18)O line widths (Δv ~ 0.4 km s~(-1)), as well as core-to-core motions only slightly in excess of the gas sound speed. The second component outlines what appears to be part of a large (2 pc; 10~3 M_⊙) ringlike structure. Cores associated with this component display both larger line widths and core-to-core motions than cores in the main cloud. The Pipe molecular ring may represent a primordial structure related to the formation of this cloud.
机译:我们通过近红外消光绘图介绍了在管道星云中识别出的94个暗云核心的分子线观察结果。利用亚利桑那射电天文台的12 m望远镜,我们获得了C〜(18)O在J = 1-0跃迁中这些核的光谱。我们使用测得的核心参数T_R〜*,Δv,v_(isr)半径和质量来探索核心的内部运动学,以及它们在较大分子云中的径向运动。我们发现,绝大部分暗消光核是真正的云核,而不是无关的细丝的叠加。虽然我们没有发现岩心的内部气体运动与其其他物理参数之间存在显着相关性,但我们发现了与空间相关的径向速度变化,这些变化概述了云的两个主要运动学成分。最大的是15 pc长的长丝,其空间尺寸和径向速度都出乎意料地窄。从管道的“干”开始,此灯丝显示出均匀小的C〜(18)O线宽(Δv〜0.4 km s〜(-1)),并且芯到芯的运动仅略大于气体声速。第二部分概述了似乎是大型(2 pc; 10〜3M_⊙)环形结构的一部分的结构。与该组件关联的核心比主云中的核心显示更大的线宽和核心到核心的运动。 Pipe分子环可以代表与该云的形成有关的原始结构。

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