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由低折射率向列型液晶包围的锥形光纤中电场控制的表面等离子体共振效应

SPR Effect Controlled by an Electric Field in a Tapered Optical Fiber Surrounded by a Low Refractive Index Nematic Liquid Crystal.

作者信息

Korec Joanna, Stasiewicz Karol A, Jaroszewicz Leszek R, Garbat Katarzyna

机构信息

Institute of Applied Physics, Military University of Technology, 00-908 Warsaw, Poland.

Institute of Chemistry, Military University of Technology, 00-908 Warsaw, Poland.

出版信息

Materials (Basel). 2020 Nov 3;13(21):4942. doi: 10.3390/ma13214942.

Abstract

This paper presents the influence of a thin metal layer deposition on the surface of a tapered optical fiber surrounded by a low liquid crystal, on light propagation inside the taper structure. In this research, three types of liquid crystal cells were under investigation: orthogonal, parallel, and twist. They differed by the rubbing direction of the electrodes in relation to the fiber axis determining the initial molecule arrangement inside the cell. Gold films with thickness d = 30 nm were deposited on the tapered fiber surface in the tapered waist area. Cells including a tapered optical fiber with no metallic layer were also examined and presented as a reference. All measurements were performed at room temperature for a different steering voltage U from 0 to 200 V, with and without any amplitude modulation with a frequency f = 5 Hz, and the wavelength λ range from 550 to 1200 nm. As a result, the resonant peaks were obtained, which depends on a liquid crystal cell type and steering voltage, as well. This paper shows the possibility of sensing the change of applied voltage by the constructed system. During measurements, additional effects as signal overlapping and intermodal interference were observed reducing measured voltage value. In the future, the improved, similar systems that will have a better response could be used as a sensor of factors to which liquid crystal (LC) will be sensitive, especially temperature and electric field.

摘要

本文介绍了在被低液晶包围的锥形光纤表面沉积薄金属层对锥形结构内光传播的影响。在本研究中,研究了三种类型的液晶盒:正交型、平行型和扭曲型。它们的区别在于电极相对于光纤轴的摩擦方向,该方向决定了盒内分子的初始排列。在锥形腰部区域的锥形光纤表面沉积了厚度d = 30 nm的金膜。还对包括没有金属层的锥形光纤的液晶盒进行了检查,并将其作为参考。所有测量均在室温下进行,施加的不同转向电压U为0至200 V,有和没有频率f = 5 Hz的任何幅度调制,波长λ范围为550至1200 nm。结果,获得了共振峰,其也取决于液晶盒类型和转向电压。本文展示了所构建系统感测施加电压变化的可能性。在测量过程中,观察到信号重叠和模式间干扰等附加效应,降低了测量的电压值。未来,具有更好响应的改进型类似系统可作为液晶(LC)敏感因素的传感器,特别是温度和电场。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69eb/7663612/dd2c675d0413/materials-13-04942-g001.jpg

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