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首页> 外文期刊>Applied optics >Multichannel tunable narrowband mid-infrared optical filter based on phase-change material Ge2Sb2Te5 defect layers
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Multichannel tunable narrowband mid-infrared optical filter based on phase-change material Ge2Sb2Te5 defect layers

机译:多通道可调窄带中红外光学滤波器基于相变材料Ge2sb2te5缺陷层

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摘要

The defect mode, which exists at the defect layer of a one-dimensional photonic crystal (1DPhC) heterostructure, provides the possibility of realizing narrowband transmission owing to its strong electromagnetic field localized effects. In this study, we numerically investigate the single- and multichannel narrowband filters in the mid-infrared region based on the defect mode by adding the monolayer and multilayer phase-change material Ge2Sb2Te5 (GST) defect layer in 1DPhC. It can provide a promising avenue to tune the transmission spectra by changing the crystallization fraction X of the GST defect layer. The remarkable narrowband transmission enhancement can be acquired for both TM and TE polarizations in spite of the large oblique incident angle. Such a defect-mode-based 1DPhC heterostructure enables tunable operating wavelength by adjusting geometrical parameters to realize the spectral selectivity of the filter in the mid-infrared region. The significant improvement and tunability of the designed single- or multichannel filters can be applied to biochemical sensing and material characterization. (C) 2020 Optical Society of America
机译:存在于一维光子晶体(1dphc)异质结构的缺陷层处存在的缺陷模式提供了由于其强大的电磁场局部效应而实现窄带传输的可能性。在本研究中,我们通过在1dphc中添加单层和多层相变材料Ge2sb2te5(Gst)缺陷层来数值根据缺陷模式对中红外区域中的单声道窄带滤波器进行数值研究。它可以通过改变GST缺陷层的结晶分数X来提供一个有希望的途径来调谐透射光谱。尽管倾斜入射角大,但可以针对TM和TE偏振获得显着的窄带传输增强。这种基于缺陷模式的1dphc异质结构通过调整几何参数来实现中红外区域中的滤波器的光谱选择性来实现可调谐的操作波长。设计的单通道或多通道过滤器的显着改进和可调性可以应用于生化感测和材料表征。 (c)2020美国光学学会

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    《Applied optics》 |2020年第3期|共6页
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