首页> 外文期刊>The Journal of Chemical Physics >An isolated line-shape model based on the Keilson–Storer function for velocity changes. II. Molecular dynamics simulations and the Q(1)lines for pure H_2
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An isolated line-shape model based on the Keilson–Storer function for velocity changes. II. Molecular dynamics simulations and the Q(1)lines for pure H_2

机译:基于Keilson-Storer函数的速度变化的孤立线形模型。二。纯H_2的分子动力学模拟和Q(1)线

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This paper presents comparisons between molecular dynamics simulations (MDSs) and the Keilson and Storer (KS) model for collision-induced translational velocity changes in pure H2 at room temperature from four different points of view. The first considers various autocorrelation functions associated with the velocity. The second and third comparisons are made for the collision kernels and for the time evolutions of some conditional probabilities for changes in the velocity modulus and orientation. Finally, the evolutions, with density, of the half widths of the Q(1) lines of the isotropic Raman (1-0) fundamental band and of the (2-0) overtone quadrupole band are investigated. The results demonstrate that, while the KS approach gives a poor description of detailed velocity-to-velocity changes, it leads to accurate results for the correlation functions and spectral shapes, quantities resulting from large averages over the velocity. On the opposite, collision kernels derived from MDS lead to accurate predictions of all considered quantities. The results open promising perspectives for modeling of the spectral shapes of other systems. They also stress the value of direct calculations of speed-dependent broadening and shifting parameters from the intermolecular potential to avoid their determination from measured spectra and permit fully meaningful tests of the models.
机译:本文从四个不同的角度对室温下纯氢气中碰撞引起的平移速度变化的分子动力学模拟(MDS)和Keilson and Storer(KS)模型进行了比较。首先考虑与速度相关的各种自相关函数。针对碰撞核以及速度模量和方向变化的一些条件概率的时间演化进行了第二次和第三次比较。最后,研究了各向同性拉曼(1-0)基带和(2-0)泛音四极杆带的Q(1)线的半宽度随密度的变化。结果表明,虽然KS方法不能很好地描述速度-速度的详细变化,但可以得到相关函数和频谱形状的准确结果,而速度和速度的平均值是由较大的平均值产生的。相反,从MDS导出的碰撞核可对所有考虑的量进行准确的预测。结果为其他系统的光谱形状建模开辟了广阔的前景。他们还强调了根据分子间电势直接计算速度相关的扩宽和平移参数的价值,从而避免了根据测得的光谱进行确定并允许对模型进行完全有意义的测试。

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