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凝聚相中的第一性原理多电子混合量子/经典模拟。I. 求解多电子问题的高效傅里叶网格方法。

First principles multielectron mixed quantum/classical simulations in the condensed phase. I. An efficient Fourier-grid method for solving the many-electron problem.

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, California 90095-1569, USA.

出版信息

J Chem Phys. 2010 Apr 14;132(14):144101. doi: 10.1063/1.3352564.

Abstract

We introduce an efficient multielectron first-principles based electronic structure method, the two-electron Fourier-grid (2EFG) approach, that is particularly suited for use in mixed quantum/classical simulations of condensed-phase systems. The 2EFG method directly solves for the six-dimensional wave function of a two-electron Hamiltonian in a Fourier-grid representation such that the effects of electron correlation and exchange are treated exactly for both the ground and excited states. Due to the simplicity of a Fourier-grid representation, the 2EFG is readily parallelizable and we discuss its computational implementation in a distributed-memory parallel environment. We show our method is highly efficient, being able to find two-electron wave functions in approximately 20 s on a modern desktop computer for a calculation this is equivalent to full configuration interaction (FCI) in a basis of 17 million Slater determinants. We benchmark the accuracy of the 2EFG by applying it to two electronic structure test problems: the harmonium atom and the sodium dimer. We find that even with a modest grid basis size, our method converges to the analytically exact solutions of harmonium in both the weakly and strongly correlated electron regimes. Our method also reproduces the low-lying potential energy curves of the sodium dimer to a similar level of accuracy as a valence CI calculation, thus demonstrating its applicability to molecular systems. In the following paper [W. J. Glover, R. E. Larsen, and B. J. Schwartz, J. Chem. Phys. 132, 144102 (2010)], we use the 2EFG method to explore the nature of the electronic states that comprise the charge-transfer-to-solvent absorption band of sodium anions in liquid tetrahydrofuran.

摘要

我们介绍了一种高效的基于多电子第一性原理的电子结构方法,即双电子傅里叶网格(2EFG)方法,该方法特别适合用于凝聚相系统的混合量子/经典模拟。2EFG 方法直接求解双电子哈密顿量的六维波函数,在傅里叶网格表示中,可以精确处理基态和激发态的电子相关和交换效应。由于傅里叶网格表示的简单性,2EFG 很容易实现并行化,我们讨论了在分布式内存并行环境中的计算实现。我们表明,我们的方法非常高效,能够在现代桌面计算机上大约 20 秒内找到双电子波函数,对于一个相当于 1700 万个斯莱特行列式基的全组态相互作用(FCI)的计算。我们通过将其应用于两个电子结构测试问题来验证 2EFG 的准确性:谐振子原子和钠二聚体。我们发现,即使在适度的网格基大小下,我们的方法也能在弱相关和强相关电子的情况下收敛到谐振子的解析精确解。我们的方法还以与价 CI 计算相似的精度再现了钠二聚体的低能势能曲线,从而证明了它在分子系统中的适用性。在接下来的论文[W. J. Glover, R. E. Larsen, and B. J. Schwartz, J. Chem. Phys. 132, 144102 (2010)]中,我们使用 2EFG 方法来探索构成液态四氢呋喃中钠离子电荷转移到溶剂吸收带的电子态的性质。

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