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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Thermo-optical applications of a novel terahertz semiconductor metamaterial design
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Thermo-optical applications of a novel terahertz semiconductor metamaterial design

机译:一种新型太赫兹半导体超材料设计的热光学应用

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摘要

In this paper, a novel semiconductor metamaterial design based on electronically induced reflection is proposed, and its thermo-optic applications at the terahertz frequency are investigated. The analytical results show that the peak resonance wavelength position depended very sensitively on the temperature of the structure. The roomtemperature operation up to 9 mu m/K at T = 295 K is achieved, which is more than the other values in the literature. It is also shown that by increasing the temperature, the emission decreases, which is promising for thermal regulation, thermal tagging, and labeling applications. Furthermore, we demonstrate numerically that the thermal modulating application can be realized in the proposed semiconductor metamaterial. We achieved 15.4% for the modulation depth and 5.14% for the amplitude modulation depth, which are great values. In general, the work has numerically proved that the thermo-optical design used has very good prospects for various negative differential thermo-optic emission technologies. Furthermore, this semiconductor-based metamaterial structure can develop a path in narrow-band thermo-optic modulating and sensing applications and the like in the future. (C) 2018 Optical Society of America
机译:本文提出了一种基于电子感应反射的新型半导体超材料设计,研究了在太赫兹频率下的热光学应用。分析结果表明,峰值谐振波长位置非常敏感地依赖于结构的温度。实现了高达9μm/ k的房间化操作,以达到9μm/ k,这比文献中的其他值大得多。还表明,通过增加温度,发射减少,这对热调节,热标签和标记应用有望。此外,我们在数值上证明了热调制应用可以在所提出的半导体超材料中实现。我们为调制深度实现了15.4%,幅度调制深度为5.14%,这是重要的值。通常,该工作已经在数值证明中,使用的热光学设计对于各种负差分热视光发射技术具有非常好的前景。此外,该基于半导体的超材料结构可以在窄带热光调制和在未来感测应用的路径中发展。 (c)2018年光学学会

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