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Optofluidic Modulation of Self-Associated Nanostructural Units Forming Planar Bragg Microcavities

机译:自缔合的纳米结构单元形成平面布拉格微腔的光流调制。

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摘要

Bragg microcavities (BMs) formed by the successive stacking of nanocolumnar porous SiO2 and TiO2 layers with slanted, zig-zag, chiral and vertical configurations are prepared by physical vapor deposition at oblique angles (PV-OAD) while azimuthally varying the substrate orientation during the multilayer growth. The slanted and zig-zag BMs act as wavelength selective optical retarders when they are illuminated with linearly polarized light, while no polarization dependence is observed for the chiral and vertical cavities. This distinct optical behavior is attributed to a self-nanostructuration mechanism involving a fence-bundling association of nanocolumns as observed by Focused Ion Beam- Scanning electron Microscopy (FIB-SEM) in the slanted and zig-zag microcavities. The outstanding retarder response of the optically active BMs can be effectively modulated by dynamic infiltration of nano- and meso-pores with liquids of different refraction indices acting as a switch of the polarization behavior. The unprecedented polarization and tunable optofluidic properties of these nanostructured photonic systems have been successfully simulated with a simple model that assumes a certain birefringence for the individual stacked layers and accounts for the light interference phenomena developed in the BMs. The possibilities of this type of self-arranged nanostructured and optically active BMs for liquid sensing and monitoring applications are discussed
机译:通过以倾斜角(PV-OAD)进行物理气相沉积,同时在沉积过程中沿方位角改变基板方向,制备了由倾斜倾斜,之字形,手性和垂直构型的纳米柱状多孔SiO2和TiO2层连续堆叠形成的布拉格微腔(BMs)。多层增长。当它们被线性偏振光照射时,倾斜的和之字形的BM充当波长选择光学延迟器,而对于手征和垂直腔则没有偏振依赖性。这种独特的光学行为归因于一种自纳米结构,涉及纳米柱的栅栏-束缚结合,如聚焦离子束扫描电子显微镜(FIB-SEM)在倾斜和之字形微腔中观察到的。光学活性BM出色的阻滞剂响应可以通过动态渗透纳米孔和中孔,并利用不同折射率的液体作为偏振行为的开关来有效地调节。这些纳米结构光子系统前所未有的偏振和可调节的光流体特性已通过简单的模型成功进行了模拟,该模型假定各个堆叠层具有一定的双折射并考虑了BM中产生的光干扰现象。讨论了这种类型的自排列纳米结构和光学活性BM在液体传感和监测应用中的可能性。

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