Departamento de Ingeniería Química, ETSI Industriales, Technical University of Madrid, José Gutiérrez Abascal 2, 28006 Madrid, Spain.
J Chem Phys. 2010 Oct 21;133(15):154103. doi: 10.1063/1.3491098.
Time correlation functions yield profound information about the dynamics of a physical system and hence are frequently calculated in computer simulations. For systems whose dynamics span a wide range of time, currently used methods require significant computer time and memory. In this paper, we discuss the multiple-tau correlator method for the efficient calculation of accurate time correlation functions on the fly during computer simulations. The multiple-tau correlator is efficacious in terms of computational requirements and can be tuned to the desired level of accuracy. Further, we derive estimates for the error arising from the use of the multiple-tau correlator and extend it for use in the calculation of mean-square particle displacements and dynamic structure factors. The method described here, in hardware implementation, is routinely used in light scattering experiments but has not yet found widespread use in computer simulations.
时间相关函数提供了物理系统动力学的深刻信息,因此经常在计算机模拟中计算。对于动力学跨越广泛时间范围的系统,当前使用的方法需要大量的计算机时间和内存。在本文中,我们讨论了多τ相关器方法,用于在计算机模拟过程中实时高效地计算准确的时间相关函数。多τ相关器在计算要求方面非常有效,并且可以根据所需的精度进行调整。此外,我们还推导了使用多τ相关器产生的误差估计,并将其扩展用于计算均方粒子位移和动态结构因子。这里描述的方法在硬件实现中常用于光散射实验,但尚未在计算机模拟中广泛使用。