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All-Optical Active Plasmonics Based on Ordered Au Nanodisk Array Embedded in Photoresponsive Liquid Crystals

机译:基于有序AU纳米磁盘阵列的All-光学活性等离子体嵌入光学液晶中的α

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We propose a new approach towards all-optical active plasmonics based on ordered Au nanodisk arrays embedded in azobenzene-doped liquid crystals (LCs). Upon photoirradiation, the doped LCs went through phase transition induced by trans-cis photoisomerization of the azobenzene molecules. The phase transition led to the change in the refractive index of the LCs experienced by incident light, and enabled reversible tuning of the localized surface plasmon resonance (LSPR) of the embedded Au nanodisks. The tuning utilized the sensitivity of the LSPR of the Au nanodisks to the change in the surroundings' refractive index. Experimental observations on both peak shift and intensity change of the LSPR matched those from discrete dipole approximation (DDA) calculations.
机译:我们提出了一种基于嵌入偶氮苯掺杂液晶(LCS)的有序的Au Nanodisk阵列的所有光学活性血浆的新方法。在光放射线上,掺杂的LCS通过偶氮苯分子的反式CIS光硅白化诱导的相转变。相变导致入射光所经历的LCS的折射率的变化,并且能够可逆调谐嵌入式AU Nano Disisks的局部表面等离子体共振(LSPR)。调谐利用Au纳米发布的LSPR的灵敏度对周围的折射率的变化。关于LSPR的峰值移位和强度变化的实验观察与离散偶极近似(DDA)计算的匹配。

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