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A low-cost approach to electronic excitation energies based on the driven similarity renormalization group

机译:基于驱动相似性重整组的电子励磁能量的低成本方法

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摘要

We propose an economical state-specific approach to evaluate electronic excitation energies based on the driven similarity renormalization group truncated to second order (DSRG-PT2). Starting from a closed-shell Hartree-Fock wave function, a model space is constructed that includes all single or single and double excitations within a given set of active orbitals. The resulting VCIS-DSRG-PT2 and VCISD-DSRG-PT2 methods are introduced and benchmarked on a set of 28 organic molecules [M. Schreiber et al., J. Chem. Phys. 128, 134110 (2008)]. Taking CC3 results as reference values, mean absolute deviations of 0.32 and 0.22 eV are observed for VCIS-DSRG-PT2 and VCISD-DSRG-PT2 excitation energies, respectively. Overall, VCIS-DSRG-PT2 yields results with accuracy comparable to those from time-dependent density functional theory using the B3LYP functional, while VCISD-DSRG-PT2 gives excitation energies comparable to those from equation-of-motion coupled cluster with singles and doubles. Published by AIP Publishing.
机译:我们提出了一种经济的状态特定方法来评估基于驱动的相似性重整化组截短到二阶(DSRG-PT2)的电子励磁能量。从闭塞Hartree-Fock波函数开始,构造了一个模型空间,其包括在给定的一组有源轨道集中的所有单个或单一的双重激励。将得到的VCIS-DSRG-PT2和VCISD-DSRG-PT2方法引入并在一组28种有机分子上进行基准测试[M. Schreiber等人。,J.Chem。物理。 128,134110(2008)]。将CC3结果作为参考值,对于VCIS-DSRG-PT2和VCISD-DSRG-PT2激发能量分别观察到0.32和0.22eV的平均绝对偏差。总的来说,VCIS-DSRG-PT2通过使用B3LYP功能与来自时间依赖性密度功能理论的精度相当的结果,而VCISD-DSRG-PT2提供与单打和双打的运动耦合集群相当的激励能量。通过AIP发布发布。

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