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首页> 外文期刊>The Journal of Chemical Physics >Excitation energies from diffusion Monte Carlo using selected configuration interaction nodes
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Excitation energies from diffusion Monte Carlo using selected configuration interaction nodes

机译:使用所选配置交互节点的扩散蒙特卡罗的励磁能量

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摘要

Quantum Monte Carlo (QMC) is a stochastic method that has been particularly successful for groundstate electronic structure calculations but mostly unexplored for the computation of excited-state energies. Here, we show that within a Jastrow-free QMC protocol relying on a deterministic and systematic construction of nodal surfaces using selected configuration interaction (sCI) expansions, one is able to obtain accurate excitation energies at the fixed-node diffusion Monte Carlo (FN-DMC) level. This evidences that the fixed-node errors in the ground and excited states obtained with sCI wave functions cancel out to a large extent. Our procedure is tested on two small organic molecules (water and formaldehyde) for which we report all-electron FN-DMC calculations. For both the singlet and triplet manifolds, accurate vertical excitation energies are obtained with relatively compact multi-determinant expansions built with small (typically double-zeta) basis sets. Published by AIP Publishing.
机译:Quantum Monte Carlo(QMC)是一种随机方法,对于地面电子结构计算特别成功,但主要是对兴奋状态能量计算的。 在这里,我们认为,在使用所选配置交互(SCI)扩展的Nodal曲面的确定性和系统构造的免费QMC协议中,可以在固定节点扩散蒙特卡罗(FN-)上获得精确的激励能量(FN- DMC)水平。 这种证据表明,使用SCI波函数获得的地面和振兴状态中的固定节点错误在很大程度上取消。 我们的程序在两种小有机分子(水和甲醛)上测试,我们报告了全电子FN-DMC计算。 对于单态和三联歧管,通过小(通常是双Zeta)基集合构建的相对紧凑的多判定膨胀,获得精确的垂直励磁能量。 通过AIP发布发布。

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