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首页> 外文期刊>Physica status solidi >Enhancements of Light Absorbability, Optical Conductivity,and Terahertz Cutoff Frequency in Stacked Layers of Selenium via Ag Nanoslabs Sandwiching
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Enhancements of Light Absorbability, Optical Conductivity,and Terahertz Cutoff Frequency in Stacked Layers of Selenium via Ag Nanoslabs Sandwiching

机译:通过银纳米板夹心法增强硒堆积层中的光吸收性,光导率和太赫兹截止频率

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摘要

Herein, the effects of insertion of Ag layer of thickness of 100 nm between two stacked layers of selenium are investigated by means of X-ray diffraction, scanning electron microscopy, and optical spectrophotometry techniques. While the structural analysis shows the amorphous nature of growth of the stacked layers of Se, the morphology analysis shows the formation of nanorods and nanowires that exhibit lengths and diameters in the ranges of 1.5-2.5 mu m and 36-146 nm, respectively. The optical spectroscopy analysis shows that the presence of Ag between stacked layers of selenium enhances the light absorbability, increases the optical conductivity, and widens the range of the terahertz cutoff frequency. In addition, Ag layers increase the drift mobility from 15.07 to 35.64 cm(2) Vs(-1) and extend the plasmon frequency domain of stacked layers of selenium from 0.45-5.60 to 0.62-5.90 GHz. The calculated optical conductivity parameters and the spectral analysis of the terahertz cutoff frequency that vary in the range of 0.35-13.20 THz indicate the applicability of the Ag sandwiched selenium stacked layers as terahertz cavities suitable for visible-light communications as band-pass filters.
机译:本文中,通过X射线衍射,扫描电子显微镜和分光光度法研究了在硒的两个堆叠层之间插入100nm厚的Ag层的影响。虽然结构分析显示了Se的堆叠层生长的非晶性质,但形态分析显示了形成的纳米棒和纳米线,其长度和直径分别在1.5-2.5μm和36-146 nm范围内。光谱分析表明,在硒的堆叠层之间存在Ag可以增强光吸收能力,提高光导率,并扩大太赫兹截止频率的范围。此外,Ag层将漂移迁移率从15.07增加到35.64 cm(2)Vs(-1),并将硒的堆叠层的等离子体激元频率域从0.45-5.60扩展到0.62-5.90 GHz。计算的光导率参数和太赫兹截止频率的频谱分析在0.35-13.20 THz的范围内变化,表明Ag夹心硒堆叠层作为太赫兹腔体的适用性,适合作为带通滤波器的可见光通信。

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