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Nuclear-electronic orbital nonorthogonal configuration interaction approach

机译:核电子轨道非正交构型相互作用方法

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摘要

The nuclear-electronic orbital nonorthogonal configuration interaction(NEO-NOCI)approach is presented.In this framework,the hydrogen nuclei are treated quantum mechanically on the same level as the electrons,and a mixed nuclear-electronic time-independent Schrodinger equation is solved with molecular orbital techniques.For hydrogen transfer systems,the transferring hydrogen is represented by two basis function centers to allow delocalization of the nuclear wave function.In the two-state NEO-NOCI approach,the ground and excited state delocalized nuclear-electronic wave functions are expressed as linear combinations of two nonorthogonal localized nuclear-electronic wave functions obtained at the NEO-Hartree-Fock level.The advantages of the NEO-NOCI approach are the removal of the adiabatic separation between the electrons and the quantum nuclei,the computational efficiency,the potential for systematic improvement by enhancing the basis sets and number of configurations,and the applicability to a broad range of chemical systems.The tunneling splitting is determined by the energy difference between the two delocalized vibronic states.The hydrogen tunneling splittings calculated with the NEO-NOCI approach for the [He-H-He]~+ model system with a range of fixed He-He distances are in excellent agreement with NEO-full CI and Fourier grid calculations.These benchmarking calculations indicate that NEO-NOCI is a promising approach for the calculation of delocalized,bilobal hydrogen wave functions and the corresponding hydrogen tunneling splittings.
机译:提出了核电子轨道非正交构型相互作用(NEO-NOCI)的方法。在此框架下,对氢原子进行与电子相同水平的量子力学处理,并求解了一个与时间无关的混合核电子的薛定inger方程分子轨道技术。对于氢传递系统,氢的传递由两个基函数中心表示,以允许原子波函数的离域。在二态NEO-NOCI方法中,基态和激发态离域的核电子波函数为表示为在NEO-Hartree-Fock级获得的两个非正交局部核电子波函数的线性组合.NEO-NOCI方法的优点是消除了电子与量子核之间的绝热间距,计算效率高,通过增强配置的基础集和数量来进行系统改进的潜力,以及适用性隧道裂隙是由两个离域的振动态之间的能量差决定的。对于[He-H-He]〜+模型系统,用NEO-NOCI方法计算的氢隧道裂隙为一系列固定的He-He距离与NEO-full CI和Fourier网格计算非常吻合。这些基准计算表明,NEO-NOCI是一种有前途的方法,可用于计算离域的,两边形氢波函数以及相应的氢隧穿裂隙。

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