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Highly Efficient, Linear-Scaling Seminumerical Exact-Exchange Method for Graphic Processing Units

机译:高效,线性缩放的图形处理单元的半妙词精确交换方法

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摘要

We present a highly efficient and asymptotically linear-scaling graphic processing unit accelerated seminumerical exact-exchange method (snLinK). We go beyond our previous central processing unit-based method (Laqua, H.; Kussmann, J.; Ochsenfeld, C. J. Chem. Theory Comput. 2018, 14, 3451-3458) by employing our recently developed integral bounds (Thompson, T. H.; Ochsenfeld, C. J. Chem. Phys. 2019, 1.50, 044101) and high-accuracy numerical integration grid (Laqua, H.; Kussmann, J.; Ochsenfeld, C. J. Chem. Phys. 2018, 149, 204111). The accuracy is assessed for several established test sets, providing errors significantly below 1mE(h) for the smallest grid. Moreover, a comprehensive performance analysis for large molecules between 62 and 1347 atoms is provided, revealing the outstanding performance of our method, in particular, for large basis sets such as the polarized quadruple-zeta level with diffuse functions.
机译:我们介绍了一种高效且渐近的线性缩放图形处理单元加速了半妙词精确交换方法(SnLink)。 我们超越了我们以前的基于中央加工单位的方法(Laqua,H .; Kussmann,J .; Ochsenfeld,CJ Chem。理论计算。2018,14,3451-3458)通过雇用我们最近开发的整体范围(Thompson,TH; ochsenfeld,cj chem。phys。2019,1.50,044101)和高精度数值集成电网(Laqua,H.; kussmann,J .; Ochsenfeld,CJ Chem。Phys。2018,149,204111)。 对几种建立的测试集进行评估的准确性,为最小电网提供明显低于1ME(H)的误差。 此外,提供了62和1347个原子之间的大分子的综合性能分析,揭示了我们的方法的出色性能,特别是对于诸如具有漫射功能的极化四季Zeta水平的大基础集。

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