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On-the-Fly ab Initio Semiclassical Calculation ofGlycine Vibrational Spectrum

机译:即时的从头算起半经典计算甘氨酸振动光谱

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摘要

We present an on-the-fly ab initio semiclassical study of vibrational energy levels of glycine, calculated by Fourier transform of the wavepacket correlation function. It is based on a multiple coherent states approach integrated with monodromy matrix regularization for chaotic dynamics. All four lowest-energy glycine conformers are investigated by means of single-trajectory semiclassical spectra obtained upon classical evolution of on-the-fly trajectories with harmonic zero-point energy. For the most stable conformer I, direct dynamics trajectories are also run for each vibrational mode with energy equal to the first harmonic excitation. An analysis of trajectories evolved up to 50 000 atomic time units demonstrates that, in this time span, conformers II and III can be considered as isolated species, while conformers I and IV show a pretty facile interconversion. Therefore, previous perturbative studies based on the assumption of isolated conformers are often reliable but might be not completely appropriate in the case of conformer IV and conformer I for which interconversion occurspromptly.
机译:我们提出了一个动态的从头算半经典研究甘氨酸的振动能级,通过波包相关函数的傅立叶变换来计算。它基于与单态矩阵正则化集成的多相干态方法,用于混沌动力学。所有四个最低能量的甘氨酸构象异构体均通过单轨道半经典光谱进行研究,该光谱是在具有谐波零点能量的飞行轨迹的经典演化过程中获得的。对于最稳定的构象机I,还为每种振动模式运行直接动力学轨迹,其能量等于一次谐波激励。对演化至50 000原子时间单位的轨迹的分析表明,在此时间范围内,构象异构体II和III可被视为孤立的物种,而构象异构体I和IV则显示出相当容易的相互转化。因此,先前基于孤立构象异构体假设的扰动研究通常是可靠的,但对于发生互变的构象异构体IV和构象异构体I可能并不完全适用及时。

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