Braams Bastiaan J, Manolopoulos David E
Department of Mathematics and Computer Science, Emory University, Atlanta, GA 30332, USA.
J Chem Phys. 2006 Sep 28;125(12):124105. doi: 10.1063/1.2357599.
We examine the short-time accuracy of a class of approximate quantum dynamical techniques that includes the centroid molecular dynamics (CMD) and ring polymer molecular dynamics (RPMD) methods. Both of these methods are based on the path integral molecular dynamics (PIMD) technique for calculating the exact static equilibrium properties of quantum mechanical systems. For Kubo-transformed real-time correlation functions involving operators that are linear functions of positions or momenta, the RPMD and (adiabatic) CMD approximations differ only in the choice of the artificial mass matrix of the system of ring polymer beads that is employed in PIMD. The obvious ansatz for a general method of this type is therefore to regard the elements of the PIMD (or Parrinello-Rahman) mass matrix as an adjustable set of parameters that can be chosen to improve the accuracy of the resulting approximation. We show here that this ansatz leads uniquely to the RPMD approximation when the criterion that is used to select the mass matrix is the short-time accuracy of the Kubo-transformed correlation function. In particular, we show that the leading error in the RPMD position autocorrelation function is O(t(8)) and the error in the velocity autocorrelation function is O(t(6)), for a general anharmonic potential. The corresponding errors in the CMD approximation are O(t(6)) and O(t(4)), respectively.
我们研究了一类近似量子动力学技术的短时精度,这类技术包括质心分子动力学(CMD)和环聚合物分子动力学(RPMD)方法。这两种方法均基于路径积分分子动力学(PIMD)技术,用于计算量子力学系统的精确静态平衡性质。对于涉及位置或动量线性函数算符的久保变换实时关联函数,RPMD和(绝热)CMD近似仅在PIMD中使用的环聚合物珠子系统的人工质量矩阵的选择上有所不同。因此,对于这类一般方法的一个明显假设是,将PIMD(或Parrinello-Rahman)质量矩阵的元素视为一组可调整的参数,可选择这些参数来提高所得近似的精度。我们在此表明,当用于选择质量矩阵的标准是久保变换关联函数的短时精度时,这个假设唯一地导致RPMD近似。特别是,对于一般的非谐势,我们表明RPMD位置自关联函数中的主导误差为O(t(8)),速度自关联函数中的误差为O(t(6))。CMD近似中的相应误差分别为O(t(6))和O(t(4))。