We introduce two new approximation methods for the numerical evaluation of the long-range Coulomb potential and the approximation of the resulting high dimensional Two-Electron Integrals tensor (TEI) with long-range interactions arising in molecular simulations. The first method exploits the tensorized structure of the compressed two-electron integrals obtained through two-dimensional Chebyshev interpolation combined with Gaussian quadrature. The second method is based on the Fast Multipole Method (FMM). Numerical experiments for different medium size molecules on high quality basis sets outline the efficiency of the two methods. Detailed algorithmic is provided in this paper as well as numerical comparison of the introduced approaches.
翻译:我们采用两种新的近似方法来对长距离库伦潜力进行数字评价,并对由此产生的高维双电综合体(TEI)进行近似,在分子模拟中产生长距离相互作用。第一种方法是利用通过两维Chebyshev与高斯二次曲线结合的干涉获得的压缩双电子组合体的加压结构。第二种方法是以快速多极法(FMM)为基础。在高质量基础上对不同中小分子进行的数字实验概述了两种方法的效率。本文提供了详细的算法以及所采用方法的数字比较。