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Configuration interaction singles natural orbitals: An orbital basis for an efficient and size intensive multireference description of electronic excited states

机译:配置相互作用选择自然轨道:有效和尺寸密集的电子激发态多参考描述的轨道基础

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Multireference quantum chemical methods, such as the complete active space self-consistent field (CASSCF) method, have long been the state of the art for computing regions of potential energy surfaces (PESs) where complex, multiconfigurational wavefunctions are required, such as near conical intersections. Herein, we present a computationally efficient alternative to the widely used CASSCF method based on a complete active space configuration interaction (CASCI) expansion built from the state-averaged natural orbitals of configuration interaction singles calculations (CISNOs). This CISNO-CASCI approach is shown to predict vertical excitation energies of molecules with closed-shell ground states similar to those predicted by state averaged (SA)-CASSCF in many cases and to provide an excellent reference for a perturbative treatment of dynamic electron correlation. Absolute energies computed at the CISNO-CASCI level are found to be variationally superior, on average, to other CASCI methods. Unlike SA-CASSCF, CISNO-CASCI provides vertical excitation energies which are both size intensive and size consistent, thus suggesting that CISNO-CASCI would be preferable to SA-CASSCF for the study of systems with multiple excitable centers. The fact that SA-CASSCF and some other CASCI methods do not provide a size intensive/consistent description of excited states is attributed to changes in the orbitals that occur upon introduction of non-interacting subsystems. Finally, CISNO-CASCI is found to provide a suitable description of the PES surrounding a biradicaloid conical intersection in ethylene. (C) 2015 AIP Publishing LLC.
机译:长期以来,多参考量子化学方法(例如完整的有源空间自洽场(CASSCF)方法)一直是计算势能面(PES)区域的最新技术,其中需要复杂的多构型波函数,例如近圆锥形交叉路口。在本文中,我们基于配置交互单次计算(CISNO)的状态平均自然轨道构建的完整活动空间配置交互(CASCI)展开,提出了一种计算效率高的替代方法,以替代广泛使用的CASSCF方法。在许多情况下,这种CISNO-CASCI方法可以预测具有近似于状态平均(SA)-CASSCF预测的闭壳基态分子的垂直激发能,并为动态电子相关的扰动处理提供极好的参考。发现在CISNO-CASCI级别上计算出的绝对能量平均在变异性上优于其他CASCI方法。与SA-CASSCF不同,CISNO-CASCI提供了垂直激发能量,既具有尺寸密集性又具有尺寸一致性,因此,在研究具有多个可激发中心的系统时,CISNO-CASCI优于SA-CASSCF。 SA-CASSCF和某些其他CASCI方法未提供激发态的尺寸密集/一致描述的事实归因于引入非相互作用子系统后发生的轨道变化。最后,发现CISNO-CASCI提供了围绕乙烯中双自由基圆锥形交叉点的PES的适当描述。 (C)2015 AIP Publishing LLC。

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