首页> 外文期刊>The Astrophysical journal >THE WATER ABUNDANCE BEHIND INTERSTELLAR SHOCKS: RESULTS FROM HERSCHEL/PACS AND SPITZER/IRS OBSERVATIONS OF H2O, CO, AND H2
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THE WATER ABUNDANCE BEHIND INTERSTELLAR SHOCKS: RESULTS FROM HERSCHEL/PACS AND SPITZER/IRS OBSERVATIONS OF H2O, CO, AND H2

机译:星际冲击后的水丰度:H2O,CO和H2的赫氏/ PAC和斯皮策/ IRS观测结果

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摘要

We have investigated the water abundance in shock-heated molecular gas, making use of Herschel measurements of far-infrared (IR) CO and H2O line emissions in combination with Spitzer measurements of mid-IR H2 rotational emissions. We present far-IR line spectra obtained with Herschel's Photodetector Array Camera and Spectrometer instrument in range spectroscopy mode toward two positions in the protostellar outflow NGC 2071 and one position each in the supernova remnants W28 and 3C391. These spectra provide unequivocal detections, at one or more positions, of 12 rotational lines of water, 14 rotational lines of CO, 8 rotational lines of OH (4 lambda doublets), and 7 fine-structure transitions of atoms or atomic ions. We first used a simultaneous fit to the CO line fluxes, along with H2 rotational line fluxes measured previously by Spitzer, to constrain the temperature and density distribution within the emitting gas; we then investigated the water abundances implied by the observed H2O line fluxes. The water line fluxes are in acceptable agreement with standard theoretical models for nondissociative shocks that predict the complete vaporization of grain mantles in shocks of velocity v ~ 25?km?s–1, behind which the characteristic gas temperature is ~1300?K and the H2O/CO ratio is 1.2
机译:我们利用Herschel的远红外(IR)CO和H2O线排放量测量值以及Spitzer的中红外H2旋转排放量测量值,对冲击加热的分子气体中的水含量进行了研究。我们介绍了用赫歇尔的光电探测器阵列照相机和光谱仪仪器在距离光谱模式下向原星流出NGC 2071中的两个位置和超新星遗迹W28和3C391中的一个位置呈现的远红外线光谱。这些光谱在一个或多个位置提供了12条水的旋转线,14条CO的旋转线,8条OH的旋转线(4个λ双峰)和7个原子或原子离子的精细结构跃迁的明确检测。我们首先使用同时拟合CO线通量以及Spitzer先前测量的H2旋转线通量来约束发射气体中的温度和密度分布。然后,我们研究了观察到的H2O线通量所隐含的水丰度。水线通量与非解离性冲击的标准理论模型一致,该模型预测了速度为v〜25?km?s–1的冲击中颗粒幔的完全汽化,其后的特征气体温度为〜1300?K,而H2O / CO比为1.2

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