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有限长度一维胆甾相液晶谐振器的光子本征模与透射率

Photonic eigenmodes and transmittance of finite-length 1D cholesteric liquid crystal resonators.

作者信息

Zaplotnik Jaka, Mur Urban, Malkar Deepshika, Ranjkesh Amid, Muševič Igor, Ravnik Miha

机构信息

Faculty of Mathematics and Physics, University of Ljubljana, 1000, Ljubljana, Slovenia.

Department of Condensed Matter Physics, Jožef Stefan Institute, 1000, Ljubljana, Slovenia.

出版信息

Sci Rep. 2023 Oct 6;13(1):16868. doi: 10.1038/s41598-023-43912-2.

Abstract

Cholesteric liquid crystals exhibit a periodic helical structure that partially reflects light with wavelengths comparable to the period of the structure, thus performing as a one-dimensional photonic crystal. Here, we demonstrate a combined experimental and numerical study of light transmittance spectra of finite-length helical structure of cholesteric liquid crystals, as affected by the main system and material parameters, as well as the corresponding eigenmodes and frequency eigenspectra with their Q-factors. Specifically, we have measured and simulated transmittance spectra of samples with different thicknesses, birefringences and for various incident light polarisation configurations as well as quantified the role of refractive index dispersion and the divergence of the incident light beam on transmittance spectra. We identify the relation between transmittance spectra and the eigenfrequencies of the photonic eigenmodes. Furthermore, we present and visualize the geometry of these eigenmodes and corresponding Q-factors. More generally, this work systematically studies the properties of light propagation in a one-dimensional helical cholesteric liquid crystal birefringent profile, which is known to be of interest for the design of micro-lasers and other soft matter photonic devices.

摘要

胆甾相液晶呈现出一种周期性螺旋结构,该结构会部分反射波长与结构周期相当的光,从而起到一维光子晶体的作用。在此,我们展示了一项关于胆甾相液晶有限长度螺旋结构的光透射光谱的实验与数值相结合的研究,该研究受主要系统和材料参数以及相应的本征模和具有品质因数的频率本征谱的影响。具体而言,我们测量并模拟了不同厚度、双折射以及各种入射光偏振配置下样品的透射光谱,还量化了折射率色散和入射光束发散对透射光谱的作用。我们确定了透射光谱与光子本征模的本征频率之间的关系。此外,我们展示并可视化了这些本征模的几何形状以及相应的品质因数。更一般地说,这项工作系统地研究了光在一维螺旋胆甾相液晶双折射分布中的传播特性,众所周知,这对于微激光器和其他软物质光子器件的设计具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48a0/10558490/e1933bade382/41598_2023_43912_Fig1_HTML.jpg

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