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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Benchmarking Post-Hartree-Fock Methods To Describe the Nonlinear Optical Properties of Polymethines: An Investigation of the Accuracy of Algebraic Diagrammatic Construction (ADC) Approaches
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Benchmarking Post-Hartree-Fock Methods To Describe the Nonlinear Optical Properties of Polymethines: An Investigation of the Accuracy of Algebraic Diagrammatic Construction (ADC) Approaches

机译:基准后Hartree-Fock方法描述聚次甲基的非线性光学性质:代数图解构建(ADC)方法精度的调查

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Third-order nonlinear optical (NLO) properties of polymethine dyes have been widely studied for applications such as all-optical switching. However, the limited accuracy of the current computational methodologies has prevented a comprehensive understanding of the nature of the lowest excited states and their influence on the molecular optical and NLO properties. Here, attention is paid to the lowest excited-state energies and their energetic ratio, as these characteristics impact the figure-of-merit for all-optical switching. For a series of model polymethines, we compare several algebraic diagrammatic construction (ADC) schemes for the polarization propagator with approximate second-order coupled cluster (CC2) theory, the widely used INDO/MRDCI approach and the symmetry adapted cluster configuration interaction (SAC-CI) algorithm incorporating singles and doubles linked excitation operators (SAC-CI SD-R). We focus in particular on the ground-to-excited state transition dipole moments and the corresponding state dipole moments, since these quantities are found to be of utmost importance for an effective description of the third-order polarizability gamma and two-photon absorption spectra. A sum-overstates expression has been used, which is, found to quickly converge. While ADC(3/2) has been found to be the most appropriate method to calculate these properties, CC2 performs poorly.
机译:聚次甲基染料的三阶非线性光学(NLO)特性已被广泛研究用于全光切换等应用。但是,当前计算方法的精确度有限,无法全面了解最低激发态的性质及其对分子光学和NLO性质的影响。在此,要注意最低的激发态能量及其能量比,因为这些特性会影响全光开关的品质因数。对于一系列模型次甲基,我们用近似二阶耦合簇(CC2)理论,广泛使用的INDO / MRDCI方法和对称适应的簇构型相互作用(SAC-)比较了偏振传播器的几种代数图解构造(ADC)方案。 CI)算法结合了单链和双链激励运算符(SAC-CI SD-R)。我们特别关注基态到激发态跃迁偶极矩和相应的状态偶极矩,因为发现这些量对于有效描述三阶极化率伽马和双光子吸收光谱至关重要。已经使用了求和状态表达式,该表达式可以快速收敛。虽然已发现ADC(3/2)是计算这些属性的最合适方法,但CC2的性能较差。

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