Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QZ, United Kingdom.
J Chem Phys. 2009 Dec 28;131(24):244518. doi: 10.1063/1.3276109.
The approximate quantum mechanical ring polymer molecular dynamics (RPMD) and linearized semiclassical initial value representation (LSC-IVR) methods are compared and contrasted in a study of the dynamics of the flexible q-TIP4P/F water model at room temperature. For this water model, a RPMD simulation gives a diffusion coefficient that is only a few percent larger than the classical diffusion coefficient, whereas a LSC-IVR simulation gives a diffusion coefficient that is three times larger. We attribute this discrepancy to the unphysical leakage of initially quantized zero point energy (ZPE) from the intramolecular to the intermolecular modes of the liquid as the LSC-IVR simulation progresses. In spite of this problem, which is avoided by construction in RPMD, the LSC-IVR may still provide a useful approximation to certain short-time dynamical properties which are not so strongly affected by the ZPE leakage. We illustrate this with an application to the liquid water dipole absorption spectrum, for which the RPMD approximation breaks down at frequencies in the O-H stretching region owing to contamination from the internal modes of the ring polymer. The LSC-IVR does not suffer from this difficulty and it appears to provide quite a promising way to calculate condensed phase vibrational spectra.
在对室温下柔性 q-TIP4P/F 水模型动力学的研究中,比较并对比了近似量子力学环聚合物分子动力学(RPMD)和线性化半经典初值表示(LSC-IVR)方法。对于这种水模型,RPMD 模拟给出的扩散系数仅比经典扩散系数大几个百分点,而 LSC-IVR 模拟给出的扩散系数大三倍。我们将这种差异归因于 LSC-IVR 模拟中初始量化的零点能(ZPE)从分子内模式向液体的分子间模式的非物理泄漏,随着 LSC-IVR 模拟的进行。尽管存在这种问题,但 RPMD 通过构造避免了这种问题,LSC-IVR 仍然可以为某些不受 ZPE 泄漏强烈影响的短时间动力学性质提供有用的近似。我们通过应用于液体水偶极子吸收光谱来说明这一点,对于 RPMD 近似在 O-H 伸缩区域的频率下失效,因为它受到环聚合物内部模式的污染。LSC-IVR 没有遇到这种困难,它似乎为计算凝聚相振动光谱提供了一种很有前途的方法。