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首页> 外文期刊>The Astrophysical journal >CLOUD STRUCTURE AND PHYSICAL CONDITIONS IN STAR-FORMING REGIONS FROM OPTICAL OBSERVATIONS. Ⅱ. ANALYSIS
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CLOUD STRUCTURE AND PHYSICAL CONDITIONS IN STAR-FORMING REGIONS FROM OPTICAL OBSERVATIONS. Ⅱ. ANALYSIS

机译:从光学观测看星状区域的云结构和物理条件。 Ⅱ。分析

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To complement the optical absorption line survey of diffuse molecular gas in Paper Ⅰ, we obtained and analyzed far-ultraviolet H_2 and CO data on lines of sight toward stars in Cep OB2 and Cep OB3. Possible correlations between column densities of different species for individual velocity components, not total columns along a line of sight as in the past, were examined and were interpreted in terms of cloud structure. The analysis reveals that there are two kinds of CH in diffuse molecular gas: CN-like CH and CH~+-like CH. Evidence is provided that CO is also associated with CN in diffuse molecular clouds. Different species are distributed according to gas density in the diffuse molecular gas. Both calcium and potassium may be depleted onto grains in high-density gas, but with different dependencies on local gas density. Gas densities for components where CN was detected were inferred from a chemical model. Analysis of cloud structure indicates that our data are generally consistent with the large-scale structure suggested by maps of CO millimeter-wave emission. On small scales, the gas density is seen to vary by factors greater than 5.0 over scales of ~10,000 AU. The relationships between column densities of CO and CH with that of H_2 along a line of sight show similar slopes for the gas toward Cep OB2 and Cep OB3, but the CO/H_2 and CH/H_2 ratios tend to differ, which we ascribe to variation in average density along the line of sight.
机译:为补充论文Ⅰ中扩散分子气体的光学吸收线测量,我们获得并分析了Cep OB2和Cep OB3中远紫外线H_2和CO数据在朝向恒星的视线上。检查了不同种类的柱密度与单个速度分量之间的可能相关性,而不是像过去那样沿视线的总柱数之间的相关性,并根据云结构进行了解释。分析表明,在扩散分子气体中有两种CH:类CN的CH和类CH〜+的CH。有证据表明,CO在扩散分子云中也与CN有关。根据气体分子在扩散分子气体中的分布而不同。高密度气体中的钙和钾都可能耗尽,但对局部气体密度的依赖性不同。从化学模型推断出检测到CN的成分的气体密度。对云结构的分析表明,我们的数据通常与CO毫米波发射图建议的大规模结构一致。在小范围内,在〜10,000 AU范围内,气体密度的变化大于5.0。沿视线方向,CO和CH的列密度与H_2的列密度之间的关系显示,气体朝向Cep OB2和Cep OB3的斜率相似,但CO / H_2和CH / H_2的比率趋于不同,这归因于变化沿视线的平均密度。

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