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首页> 外文期刊>The Astrophysical journal >ROVIBRATIONAL QUENCHING RATE COEFFICIENTS OF HD IN COLLISIONS WITH He
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ROVIBRATIONAL QUENCHING RATE COEFFICIENTS OF HD IN COLLISIONS WITH He

机译:与He碰撞时HD的旋转淬火速率系数

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Along with H2, HD has been found to play an important role in the cooling of the primordial gas for the formation of the first stars and galaxies. It has also been observed in a variety of cool molecular astrophysical environments. The rate of cooling by HD molecules requires knowledge of collisional rate coefficients with the primary impactors, H, He, and H2. To improve knowledge of the collisional properties of HD, we present rate coefficients for the He-HD collision system over a range of collision energies from 10–5 to 5 × 103 cm–1. Fully quantum mechanical scattering calculations were performed for initial HD rovibrational states of j = 0 and 1 for v = 0-17 which utilized accurate diatom rovibrational wave functions. Rate coefficients of all Δv = 0, –1, and –2 transitions are reported. Significant discrepancies with previous calculations, which adopted a small basis and harmonic HD wave functions for excited vibrational levels, were found for the highest previously considered vibrational state of v = 3. Applications of the He-HD rate coefficients in various astrophysical environments are briefly discussed.
机译:人们发现,HD与H2一起在原始气体冷却过程中起着重要作用,以形成第一批恒星和星系。还已经在各种凉爽的分子天体物理学环境中观察到它。 HD分子的冷却速率需要了解与主要撞击因子H,He和H2的碰撞速率系数。为了提高对HD碰撞特性的了解,我们介绍了He-HD碰撞系统在10–5到5×103 cm-1的碰撞能量范围内的速率系数。对于j = 0的初始HD振动状态和v = 0-17的1的初始HD振动状态进行了全量子机械散射计算,其中利用了精确的硅藻振动波函数。报告所有Δv= 0,–1和–2跃迁的速率系数。发现与先前计算的显着差异,该差异采用了较小的基础,并且对于激发的振动能级采用谐波HD波函数,从而获得了先前认为的v = 3的最高振动状态。简要讨论了He-HD速率系数在各种天体环境中的应用。 。

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