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Singlet-Fission-Induced Enhancement of Third-OrderNonlinear Optical Properties of Pentacene Dimers

机译:单线裂变引起的三阶增强并五苯二聚物的非线性光学性质

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摘要

Using quantum chemical calculations and exciton dynamics simulations, we investigate the static second hyperpolarizability γ [the third-order nonlinear optical (NLO) property at the molecular scale] of slip-stacked pentacene dimer models in the correlated-triplet-pair [1(TT)] state created from the singlet excited state in the singlet fission (SF) process. It is found that the SF induces significant (∼20 times at maximum) enhancement of γ/monomer in the 1(TT) state as compared to that in the singlet ground state. The origin of the remarkable enhancement of γ/monomer is revealed by analyzing the γ density distribution and the intermolecular orbital interaction. Furthermore, we clarify molecular packings suitable for highly efficient SF and largely enhanced γ values of a novel class of SF-induced NLO systems, which have promising potential to surpass the conventional NLO systems.
机译:使用量子化学计算和激子动力学模拟,我们研究了相关三重态对中滑堆积的并五苯二聚体模型的静态第二超极化率γ[在分子尺度上的三阶非线性光学(NLO)性质]。 1 (TT)]状态由单线态裂变(SF)过程中的单线态激发态创建。结果发现,与单线基态相比,在 1 (TT)状态下,SF引起γ/单体的显着增强(最多约20倍)。通过分析γ密度分布和分子间轨道相互作用,揭示了γ/单体显着增强的起源。此外,我们阐明了适用于高效SF和新型SF诱导NLO系统的大​​幅提高的γ值的分子堆积,具有超越常规NLO系统的潜力。

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