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Second-order perturbation theory with a density matrix renormalization group self-consistent field reference function: Theory and application to the study of chromium dimer

机译:具有密度矩阵重归一化群自洽场参考函数的二阶摄动理论:理论和在铬二聚体研究中的应用

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We present a second-order perturbation theory based on a density matrix renormalization group self-consistent field (DMRG-SCF) reference function. The method reproduces the solution of the complete active space with second-order perturbation theory (CASPT2) when the DMRG reference function is represented by a sufficiently large number of renormalized many-body basis, thereby being named DMRG-CASPT2 method. The DMRG-SCF is able to describe non-dynamical correlation with large active space that is insurmountable to the conventional CASSCF method, while the second-order perturbation theory provides an efficient description of dynamical correlation effects. The capability of our implementation is demonstrated for an application to the potential energy curve of the chromium dimer, which is one of the most demanding multireference systems that require best electronic structure treatment for non-dynamical and dynamical correlation as well as large basis sets. The DMRG-CASPT2/cc-pwCV5Z calculations were performed with a large (3d double-shell) active space consisting of 28 orbitals. Our approach using large-size DMRG reference addressed the problems of why the dissociation energy is largely overestimated by CASPT2 with the small active space consisting of 12 orbitals (3d4s), and also is oversensitive to the choice of the zeroth-order Hamiltonian.
机译:我们提出了基于密度矩阵重整化群自洽场(DMRG-SCF)参考函数的二阶摄动理论。当DMRG参考函数由足够多的重归一化多体基础表示时,该方法用二阶微扰理论(CASPT2)再现了完整活动空间的解,从而被称为DMRG-CASPT2方法。 DMRG-SCF能够描述具有大活动空间的非动态相关性,这是常规CASSCF方法无法克服的,而二阶微扰理论提供了动态相关性效果的有效描述。我们的实现能力已证明可应用于铬二聚体的势能曲线,该铬二聚体是最苛刻的多参考系统之一,需要对非动态和动态相关以及大型基础集进行最佳电子结构处理。 DMRG-CASPT2 / cc-pwCV5Z计算是在由28个轨道组成的大型(3d双壳)活动空间中进行的。我们使用大尺寸DMRG参考的方法解决了以下问题:为什么CASPT2会高估离解能,而活动空间却只有12个轨道(3d4s),并且对零阶哈密顿量的选择也不敏感。

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