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首页> 外文期刊>The Astrophysical journal >H ii REGION IONIZATION OF THE INTERSTELLAR MEDIUM: A CASE STUDY OF NGC 7538
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H ii REGION IONIZATION OF THE INTERSTELLAR MEDIUM: A CASE STUDY OF NGC 7538

机译:星际介质的H ii区电离:以NGC 7538为例

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Using data from the Green Bank Telescope, we analyze the radio continuum (free–free) and radio recombination line (RRL) emission of the compact H ii region NGC 7538 (Sharpless 158). We detect extended radio continuum and hydrogen RRL emission beyond the photodissociation region (PDR) toward the north and east, but a sharp decrease in emission toward the south and west. This indicates that a non-uniform PDR morphology is affecting the amount of radiation "leaking" through the PDR. The strongest carbon RRL emission is found in the western PDR that appears to be dense. We compute a leaking fraction f R ?=?15?±?5% of the radio continuum emission measured in the plane of the sky which represents a lower limit when accounting for the three-dimensional geometry of the region. We detect an average abundance ratio by number of 0.088?±?0.003 inside the H ii region and a decrease in this ratio with increasing distance from the region beyond the PDR. Using Herschel Space Observatory data, we show that small dust temperature enhancements to the north and east of NGC 7538 coincide with extended radio emission, but that the dust temperature enhancements are mostly contained within a second PDR to the east. Unlike the giant H ii region W43, the radiation leaking from NGC 7538 seems to only affect the local ambient medium. This suggests that giant H ii regions may have a large effect in maintaining the ionization of the interstellar medium.
机译:利用格林银行望远镜的数据,我们分析了紧凑的H ii区域NGC 7538(无尖峰158)的无线电连续性(自由-自由)和无线电重组线(RRL)发射。我们检测到超出光解离区(PDR)的向北和向东扩展的无线电连续谱和氢RRL辐射,但向南和向西的辐射急剧下降。这表明不均匀的PDR形态正在影响通过PDR“泄漏”的辐射量。在西部的PDR中发现了最强的RRL碳排放,看上去似乎很密集。我们计算出在天空平面上测得的无线电连续性发射的泄漏分数f R≥15 15±5%,这在考虑该区域的三维几何形状时代表了下限。我们检测到H ii区域内的平均丰度比为0.088?±?0.003,并且随着距PDR以外区域的距离增加,该比值减小。使用赫歇尔太空天文台的数据,我们发现NGC 7538北部和东部的小粉尘温度升高与无线电发射的扩展一致,但粉尘温度的升高大部分包含在东部第二个PDR中。与巨大的H ii区域W43不同,NGC 7538泄漏的辐射似乎仅影响本地环境介质。这表明巨大的H ii区可能在维持星际介质的电离中起很大作用。

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