Efficient Kohn–Sham density-functional theory implementation of isotropic spectroscopic observables associated with quadratic response functions

IF 2.9 Q3 CHEMISTRY, PHYSICAL
Karan Ahmadzadeh, Xin Li, Ž. Rinkevičius, P. Norman
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引用次数: 0

Abstract

For general exchange–correlation functionals with a dependence on the local spin densities and spin-density gradients, we provide computationally tractable expressions for the tensor-averaged quadratic response functions pertinent to the experimental observables in second-harmonic generation (SHG). We demonstrate how the tensor-averaged quantities can be implemented with reference to a derived minimal number of first- and second-order perturbed Fock matrices. Our consideration has the capability of treating a situation of resonance enhancement as it is based on damped response theory and allows for the evaluation of tensor-averaged resonant-convergent quadratic response functions using only ∼25% (one-photon off-resonance regions) and ∼50% (one-photon resonance regions) of the number of auxiliary Fock matrices required when explicitly calculating all the needed individual tensor components. Numerical examples of SHG intensities in the one-photon off-resonance region are provided for a sample of makaluvamine derivatives recognized for their large nonlinear optical responses as well as a benchmark set of small- and medium-sized organic molecules.
有效的Kohn-Sham密度泛函理论实现与二次响应函数相关的各向同性光谱观测
对于依赖于局部自旋密度和自旋密度梯度的一般交换相关函数,我们提供了与二次谐波产生(SHG)实验观测值相关的张量平均二次响应函数的计算易于处理的表达式。我们证明了张量平均量是如何通过一阶和二阶微扰Fock矩阵的最小数量来实现的。我们的考虑具有处理共振增强情况的能力,因为它基于阻尼响应理论,并且允许在显式计算所有所需的单个张量分量时,仅使用所需辅助Fock矩阵数量的~ 25%(单光子非共振区)和~ 50%(单光子共振区)来评估张量平均共振收敛二次响应函数。本文提供了单光子非共振区SHG强度的数值例子,用于识别具有大非线性光学响应的makaluvamine衍生物样品以及一组中小型有机分子的基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
11.50%
发文量
46
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