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Self-localization of excitons and Nonlinear optical properties of J-aggregates in a periodically modulated thin film

机译:周期调制薄膜中激子的自定域和J-聚集体的非线性光学性质

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摘要

Nonlinear optical properties of dye J-aggregates embedded in a one-dimensional periodic medium are analyzed theoretically and numerically. The effect of strain-induced exciton self-localization in a chain of monomers on nonlinear optical properties of the system is investigated for weakly and highly ordered J-aggregates. It is found that exciton self-localization in a periodic medium enhances light absorption and effective optical susceptibility. Optical bistability thresholds are examined for weakly and strongly excited dye J-aggregate thin films. It is shown that the threshold intensity of incident electromagnetic field is lower by more than an order of magnitude as compared to that for a homogeneous medium.
机译:从理论上和数值上分析了嵌入在一维周期介质中的染料J聚集体的非线性光学性质。对于弱和高度有序的J聚集体,研究了单体链中应变诱导的激子自定位对系统非线性光学性质的影响。发现激子在周期性介质中的自定位增强了光吸收和有效的光学敏感性。检查了弱和强激发染料J聚集薄膜的光学双稳性阈值。结果表明,与均匀介质相比,入射电磁场的阈值强度降低了一个数量级以上。

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