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Highly oriented molecular aggregates in 1-D photonic crystal slabs: toward the control of molecular arrangement from submicron to nanometer region

机译:一维光子晶体平板中高度取向的分子聚集体:朝着控制从亚微米到纳米区域的分子排列

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摘要

We have investigated the optical properties of one-dimensional photonic crystal slabs (PCSs) of molecular aggregates, and reported the vacuum Rabi splitting of 50 meV in pseudoisocyanine (PIC) J-aggregates in the strong coupling regime. The mode splitting should increase with the increase of the molecular density. Then, we fabricated PIC J-aggregates without any polymer matrix. As a result, we can observed Rabi splitting over 200 meV. Moreover, the strong J-band is observed only with the light polarization along the grooves. The observed strong anisotropy around the J-band indicates that almost all of the molecules are oriented along the grooves. It means the grooves with the several hundred nanometers period arrange the direction of molecules, nevertheless, the size of a molecule is less than 1 nm. This is one of the attractive features of molecular PCs, because we will be able to arrange nanometer structures with the use of the submicron structures.
机译:我们已经研究了分子聚集体的一维光子晶体平板(PCS)的光学性质,并报告了在强耦合机制下伪异氰酸(PIC)J聚集体中50 meV的真空拉比分裂。模式分裂应随分子密度的增加而增加。然后,我们制造了没有任何聚合物基质的PIC J聚集体。结果,我们可以观察到Rabi分裂超过200 meV。此外,仅在沿着沟槽的光偏振下观察到强的J带。在J波段周围观察到的强各向异性表明几乎所有分子都沿着凹槽取向。这意味着具有数百纳米周期的凹槽排列了分子的方向,但是,分子的大小小于1 nm。这是分子PC的吸引人的特征之一,因为我们将能够使用亚微米结构来排列纳米结构。

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