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首页> 外文期刊>The Journal of Chemical Physics >Using a direct simulation Monte Carlo approach to model collisions in a buffer gas cell
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Using a direct simulation Monte Carlo approach to model collisions in a buffer gas cell

机译:使用直接仿真蒙特卡罗方法来缓冲气体电池模拟碰撞

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A direct simulation Monte Carlo (DSMC) method is applied to model collisions between He buffer gas atoms and ammonia molecules within a buffer gas cell. State-to-state cross sections, calculated as a function of the collision energy, enable the inelastic collisions between He and NH3 to be considered explicitly. The inclusion of rotational-state-changing collisions affects the translational temperature of the beam, indicating that elastic and inelastic processes should not be considered in isolation. The properties of the cold molecular beam exiting the cell are examined as a function of the cell parameters and operating conditions; the rotational and translational energy distributions are in accord with experimental measurements. The DSMC calculations show that thermalisation occurs well within the typical 10-20 mm length of many buffer gas cells, suggesting that shorter cells could be employed in many instances-yielding a higher flux of cold molecules. (C) 2017 Author(s).
机译:应用直接仿真蒙特卡罗(DSMC)方法应用于在缓冲气体细胞内的缓冲气体原子和氨分子之间模拟碰撞。 状态到状态横截面,作为碰撞能量的函数计算,使得他和NH3之间的内部碰撞能够明确地考虑。 包含旋转状态改变的碰撞影响光束的平移温度,表明不应分离地考虑弹性和无弹性过程。 作为电池参数和操作条件的函数检查离开电池的冷分子束的性质; 旋转和平移能量分布符合实验测量。 DSMC计算表明,热化在许多缓冲气体细胞的典型10-20mm长度内发生良好,表明在许多情况下可以使用更短的细胞 - 产生更高的冷分子通量。 (c)2017年作者。

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