...
首页> 外文期刊>The Astrophysical journal >MOLECULAR OUTFLOWS DRIVEN BY LOW-MASS PROTOSTARS. I. CORRECTING FOR UNDERESTIMATES WHEN MEASURING OUTFLOW MASSES AND DYNAMICAL PROPERTIES
【24h】

MOLECULAR OUTFLOWS DRIVEN BY LOW-MASS PROTOSTARS. I. CORRECTING FOR UNDERESTIMATES WHEN MEASURING OUTFLOW MASSES AND DYNAMICAL PROPERTIES

机译:低质量原恒星驱动的分子流出。 I.测量流量质量和动力学特性时的低估

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We present a survey of 28 molecular outflows driven by low-mass protostars, all of which are sufficiently isolated spatially and/or kinematically to fully separate into individual outflows. Using a combination of new and archival data from several single-dish telescopes, 17 outflows are mapped in 12CO?(2-1) and 17 are mapped in 12CO?(3-2), with 6 mapped in both transitions. For each outflow, we calculate and tabulate the mass (M flow), momentum (P flow), kinetic energy (E flow), mechanical luminosity (L flow), and force (F flow) assuming optically thin emission in LTE at an excitation temperature, T ex, of 50?K. We show that all of the calculated properties are underestimated when calculated under these assumptions. Taken together, the effects of opacity, outflow emission at low velocities confused with ambient cloud emission, and emission below the sensitivities of the observations increase outflow masses and dynamical properties by an order of magnitude, on average, and factors of 50-90 in the most extreme cases. Different (and non-uniform) excitation temperatures, inclination effects, and dissociation of molecular gas will all work to further increase outflow properties. Molecular outflows are thus almost certainly more massive and energetic than commonly reported. Additionally, outflow properties are lower, on average, by almost an order of magnitude when calculated from the 12CO?(3-2) maps compared to the 12CO?(2-1) maps, even after accounting for different opacities, map sensitivities, and possible excitation temperature variations. It has recently been argued in the literature that the 12CO?(3-2) line is subthermally excited in outflows, and our results support this finding.
机译:我们对由低质量原恒星驱动的28个分子流出进行了调查,所有这些在空间和/或运动学上都被充分隔离,可以完全分离为单个流出。使用来自几个单碟望远镜的新数据和档案数据的组合,将17个流出映射到12COα(2-1)中,将17个流出映射在12COα(3-2)中,在两个过渡中映射6个。对于每个流出,我们假设在激励下LTE中的光发射薄,我们计算并制表质量(M流量),动量(P流量),动能(E流量),机械光度(L流量)和力(F流量)。温度T ex为50?K。我们显示,在这些假设下进行计算时,所有计算的属性都被低估了。两者合计,不透明度,低速流出物排放与周围云散发相混淆的影响以及低于观测灵敏度的排放的影响使流出物质量和动力学特性平均增加一个数量级,在50%至90%的范围内。最极端的情况。不同的(和不均匀的)激发温度,倾斜效应和分子气体的分解都将进一步提高流出性能。因此,几乎可以肯定的是,分子外流比通常报道的更大规模,更活跃。此外,从12CO3(3-2)图计算得出的流出特性与12COα(2-1)图相比平均降低了将近一个数量级,即使考虑了不同的混浊度,图灵敏度,以及可能的激发温度变化。最近有文献认为12CO?(3-2)线在流出时是亚热激发的,我们的结果支持了这一发现。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号