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具有聚合物分散液晶缺陷层的光子带隙器件中缺陷模式的空间和电学切换。

Spatial and electrical switching of defect modes in a photonic bandgap device with a polymer-dispersed liquid crystal defect layer.

作者信息

Wu Po-Chang, Yeh En-Rong, Zyryanov Victor Ya, Lee Wei

出版信息

Opt Express. 2014 Aug 25;22(17):20278-83. doi: 10.1364/OE.22.020278.

Abstract

This paper investigates the spectral properties of a one-dimensional photonic crystal (PC) containing an inhomogeneous polymer- dispersed liquid crystal (PDLC) as a defect layer. Experimental results indicate that the voltage-induced reorientation of LC molecules between the light-scattering and transparent states in the PDLC enables the electrical tuning of the transmittance of defect-mode peaks in the spectrum of the PC/PDLC cell. Specifically, owing to the unique configuration of the spatial distribution of LC droplet sizes in the defect layer, a concept concerning the spatial switching in the wavelength of defect modes is proposed. As a result, the PC/PDLC hybrid cell is suggested as a potential element for realizing an electrically tunable and spatially switchable photonic bandgap device, which is polarizer-free and requires no alignment layers in the fabrication process.

摘要

本文研究了一种包含非均匀聚合物分散液晶(PDLC)作为缺陷层的一维光子晶体(PC)的光谱特性。实验结果表明,PDLC中液晶分子在光散射态和透明态之间的电压诱导重取向能够实现对PC/PDLC单元光谱中缺陷模峰透过率的电调谐。具体而言,由于缺陷层中液晶微滴尺寸空间分布的独特构型,提出了一种关于缺陷模波长空间切换的概念。结果表明,PC/PDLC混合单元有望成为实现电调谐和空间可切换光子带隙器件的潜在元件,该器件无需偏振器,在制造过程中也无需取向层。

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