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Combining Static and Dynamical Approaches for Infrared Spectra Calculations of Gas Phase Molecules and Clusters

机译:结合静态和动力学方法对气相分子和簇的红外光谱计算

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摘要

Four models for the calculation of the IR spectrum of gas phase molecules and clusters from molecular dynamics simulations are presented with the aim to reduce the computational cost of the usual Fourier transform (FT) of the time correlation function of the dipole moment. These models are based on the VDOS, FT of time correlation function of velocities, and atomic polar tensors (APT). The models differ from each other by the number of APTs inserted into the velocities correlation function. Excellent accuracy is achieved by the model adopting a weighted linear combination of a few selected APTs adapted for the rotation of the molecule (model D). The achieved accuracy relates to band positions, band shapes, and band intensities. Depending on the degree of actual dynamics of the molecule, rotational motion, conformational isomerization, and large amplitude motions that can be seen during the finite temperature trajectory, one could also apply one of the other models (models A, B, or C), but with caution. Model D is therefore found simple and accurate, with appealing computational cost and should be systematically applied. Its generalization to condensed phase systems should be straightforward.
机译:提供四种用于计算IR分子的IR光谱和来自分子动力学模拟的簇的模型,目的是降低偶极矩的时间相关函数的通常傅里叶变换(FT)的计算成本。这些模型基于VDO,时间相关函数的VDO,速度和原子极性张量(APT)。通过插入速度相关函数的APT的数量,模型彼此不同。通过适用于分子旋转的少量选择的少量选择的少量选择的分析的模型实现了优异的精度。实现的精度涉及带位置,带形状和频带强度。根据分子的实际动态程度,在有限温度轨迹期间可以看到的旋转运动,构象异构化和大的幅度运动,也可以应用其他模型之一(模型A,B或C),但谨慎。因此,模型D具有简单准确,具有吸引力的计算成本,应系统地应用。它的凝结相系统的概括应该是简单的。

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