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Tunable slow- and fast-light devices based on molecular-aggregate nanofilms

机译:基于分子骨料纳米螺纹的可调谐慢速和快速灯装置

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摘要

We study the tunability of nanofilms composed of linear molecular aggregates for slow- and fast-light performance. In order to describe a wide range of intensity field regimes, we consider a two-exciton model for the molecular aggregate where exciton creation or annihilation may occur. Our simulations show fractional delays and advancements of the order of those found in longer propagating media. This nanometric device presents two functionalities: (i) it allows the existence of slow or fast light in a different bandwidth of pulsed signals and (ii) such dual performance can be tuned by a small perturbation of the input signal amplitude for a fixed pulse temporal width. Both effects are tested under the usual presence of disorder in these molecular systems. This study concludes that a molecular-aggregate nanofilm presents a wide control of group velocity in the GHz and THz bandwidths.
机译:我们研究了由线性分子聚集体组成的纳米丝的可调节性,以进行缓慢和快速的性能。 为了描述广泛的强度场制度,我们考虑一个两个激子模型的分子骨料,其中可能发生激子创作或湮灭。 我们的模拟显示了在较长繁殖媒体中发现的节日的分数延迟和进步。 该纳米器件呈现两个功能:(i)它允许在脉冲信号的不同带宽中存在慢速或快速光,并且(ii)可以通过对固定脉冲时间的输入信号幅度的小扰动来调整这种双重性能 宽度。 在这些分子系统的常规存在下测试两种效果。 该研究得出结论,分子聚集体纳米丝膜在GHz和THz带宽中的群体速度方面呈广泛控制。

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