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Quantum Thermal Bath for Path Integral Molecular Dynamics Simulation

机译:用于路径积分分子动力学模拟的量子热浴

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The quantum thermal bath (QTB) method has been recently developed to account for the quantum nature of the nuclei by using standard molecular dynamics (MD) simulation. QTB-MD is an efficient but approximate method when dealing with strongly anharmonic systems, while path integral molecular dynamics (PIMD) gives exact results but in a huge amount of computation time. The QTB and PIMD methods have been combined in order to improve the PIMD convergence or correct the failures of the QTB-MD technique. Therefore, a new power spectral density of the random force within the QTB has been developed. A modified centroid-virial estimator of the kinetic energy, especially adapted to QTB-PIMD, has also been proposed. The method is applied to selected systems: a one-dimensional double-well system, a ferroelectric phase transition, and the position distribution of an hydrogen atom in a fuel cell material. The advantage of the QTB-PIMD method is its ability to give exact results with a more reasonable computation time for strongly anharmonic systems.
机译:最近开发了量子热浴(QTB)方法,以通过使用标准分子动力学(MD)模拟来说明核的量子性质。当处理强非调和系统时,QTB-MD是一种有效但近似的方法,而路径积分分子动力学(PIMD)可以给出准确的结果,但需要大量的计算时间。 QTB和PIMD方法已被组合在一起,以改善PIMD的收敛性或纠正QTB-MD技术的失败。因此,已经开发了QTB内的随机力的新的功率谱密度。还提出了一种改进的动能质心-病毒估计器,特别适用于QTB-PIMD。该方法适用于选定的系统:一维双阱系统,铁电相变以及燃料电池材料中氢原子的位置分布。 QTB-PIMD方法的优势在于,它能够为强非谐波系统以更合理的计算时间给出准确的结果。

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