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首页> 外文期刊>The Astrophysical Journal. Letters >EXPERIMENTAL AND THEORETICAL ANALYSIS OF LOW-ENERGY CO + H-2 INELASTIC COLLISIONS
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EXPERIMENTAL AND THEORETICAL ANALYSIS OF LOW-ENERGY CO + H-2 INELASTIC COLLISIONS

机译:低能CO + H-2弹性碰撞的实验和理论分析

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摘要

Carbon monoxide is one of the most abundant components in many interstellar media and modeling its spectra requires knowledge of rate coefficients for the rotational (de-) excitation by collision with the dominant species in molecular regions, H-2. In this Letter, we report on experimental observation of resonances in the collisional excitation of CO by para- and ortho-H-2 at low collision energies characteristic of cold molecular clouds (down to a few Kelvin). Our experimental integral cross sections are compared to the results of new quantum mechanical scattering calculations performed using the highly accurate ab initio potential energy surface of Jankowski et al. Since the scattering calculations are very sensitive to the accuracy of the potential, especially when quantum resonances are involved, the quality of the agreement between theory and experiment reinforces the confidence in the observables derived from this potential energy surface, such as collisional rate coefficients calculated in the 1-20 K range.
机译:一氧化碳是许多星际介质中最丰富的成分之一,对它的光谱进行建模需要了解与分子区域H-2中的主要物种碰撞而引起的旋转(去激励)速率系数。在这封信中,我们报告了对位和邻位H-2在冷分子云的低碰撞能量(低至几开尔文)特征下CO碰撞激发共振的实验观察。我们的实验积分截面与使用Jankowski等人的高精度从头算势能面进行的新量子机械散射计算的结果进行了比较。由于散射计算对电势的精度非常敏感,特别是在涉及量子共振时,理论和实验之间的协议质量增强了对从该势能面得到的可观测物的信心,例如在计算中的碰撞速率系数。 1-20 K范围。

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