用于中红外和热红外的硅空气反射镜MEMS法布里-珀罗干涉仪

M. Tuohiniemi, A. Näsilä, A. Akujärvi
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引用次数: 2

摘要

我们研究了用硅/气隙分布布拉格反射器实现的表面微加工法布里-珀罗干涉仪在中红外波段的性能。与传统的固体膜对相比,这种Si-FPI技术具有更好的指数对比度,可以实现更宽的阻带和更高的分辨率。制备了四种不同设计的干涉仪并进行了比较。两种设计采用Si/SiO2结构的固体膜反射器。他们的数据被用作中红外干涉仪的参考,并作为从模拟结果到测量数据的性能映射的模板。第三种设计在热红外线下操作,这是我们第一次使用Si/气隙反射镜。前面报告的性能在这里指的是估计技术可扩展性到更短的波长。最后,我们实现了中红外硅/气隙技术的不可调谐概念验证版本。测量的数据被映射为可调版本的可实现性能的估计。给出了传输和分辨率数据,并讨论了再现数据的仿真模型。对可调谐中红外Si-FPI进行了预测。结果表明,与现有技术相比,该器件有望具有两倍的分辨率和明显更宽的阻带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MEMS Fabry-Perot interferometer with Si-air mirrors for mid- and thermal infrared
We studied how a surface-micromachined Fabry-Perot interferometer, realized with Si / air-gap distributed Bragg reflectors, would perform at the middle-infrared wavelengths. Compared with traditional solid-film pairs, this Si-FPI technology features better index contrast, which enables wider stop band and potentially higher resolution. Four different designs of interferometers were prepared and compared. Two designs apply the solid-film reflectors of Si/SiO2 structure. Their data is exploited as a reference of a middle-infrared interferometer and, as a template for mapping the performance from the simulation results to the measured data. The third design operates at the thermal infrared and it was our first embodiment with the Si/air-gap mirrors. The performance, reported earlier, is here referred to for estimating the technology scalability down to shorter wavelengths. Finally, we realized a non-tunable proof-of-concept version of the Si/air-gap technology for middle infrared. The measured data is mapped into an estimate of the achievable performance of a tunable version. We present the transmission and resolution data and argument the simulation models that reproduce the data. The prediction for the tunable middle-infrared Si-FPI is then presented. The results indicate that such a device is expected to have two-fold better resolution and a clearly wider stop band, compared with the prior art.
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