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How two-dimensional brick layer J-aggregates differ from linear ones: Excitonic properties and line broadening mechanisms

机译:二维砖层J-聚集体与线性层的不同之处在于:激子性质和线增宽机制

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摘要

We study the excitonic coupling and homogeneous spectral line width of brick layer J-aggregate films. We begin by analysing the structural information revealed by the two-exciton states probed in two-dimensional spectra. Our first main result is that the relation between the excitonic couplings and the spectral shift in a two-dimensional structure is different (larger shift for the same nearest neighbour coupling) from that in a one-dimensional structure, which leads to an estimation of dipolar coupling in two-dimensional lattices. We next investigate the mechanisms of homogeneous broadening—population relaxation and pure dephasing—and evaluate their relative importance in linear and two-dimensional aggregates. Our second main result is that pure dephasing dominates the line width in two-dimensional systems up to a crossover temperature, which explains the linear temperature dependence of the homogeneous line width. This is directly related to the decreased density of states at the band edge when compared with linear aggregates, thus reducing the contribution of population relaxation to dephasing.Pump-probe experiments are suggested to directly measure the lifetime of the bright state and can therefore support the proposed model.
机译:我们研究了砖层J骨料薄膜的激子耦合和均匀谱线宽度。我们首先分析二维光谱中探测到的两个激子态揭示的结构信息。我们的第一个主要结果是,二维结构中激子耦合与光谱位移之间的关系与一维结构中激振耦合与光谱位移之间的关系不同(对于相同的最近邻耦合,位移较大)。二维晶格耦合。接下来,我们研究均匀扩展的机制(种群松弛和纯相移),并评估它们在线性和二维聚合中的相对重要性。我们的第二个主要结果是,纯相移在二维系统中直至交越温度都主导着线宽,这说明了均匀线宽对线性温度的依赖性。与线性聚集体相比,这直接与能带边缘处态密度的降低直接相关,从而减少了种群弛豫对相移的影响。建议进行泵探针实验直接测量亮态的寿命,从而可以支持亮态的寿命建议的模型。

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