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Large-Area MEMS-Based Distributed Bragg Reflectors for Short-Wave and Mid-Wave Infrared Hyperspectral Imaging Applications

机译:基于大面积MEMS的分布式布拉格反射器,用于短波和中波红外高光谱成像应用

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We present the design, fabrication, and optical characterization of silicon-air-silicon-based distributed Bragg reflectors, or quarter wavelength mirrors, in sizes ranging from 200 to 5 mm 5 mm. Such mirrors can be used in conjunction with either single-element photodetectors or large-area focal plane arrays to realize tunable multispectral sensors or adaptive focal plane arrays from the short-wave infrared wavelength ranges (1500–3000 nm) to mid-wave infrared wavelength (3000–6000 nm) ranges. Surface optical profile measurements indicate a flatness of the order of 20–30 nm in the fabricated structures across several millimetres. Single point spectral measurements on devices show excellent agreement with simulated optical models. The fabricated distributed Bragg reflectors show % reflectivity, which is in close agreement with theoretical reflectivity. The demonstrated high reflectivity across a wide wavelength range renders them suitable as broadband reflectors. Finally, we present optical transmittance modeling results for Fabry-Pérot filters based on these distributed Bragg reflectors. [2015-0161]
机译:我们介绍了硅-空气-硅基分布式布拉格反射器或四分之一波长反射镜的设计,制造和光学特性,尺寸范围从200到5 mm 5 mm。这种反射镜可与单元素光电探测器或大面积焦平面阵列结合使用,以实现从短波红外波长范围(1500-3000 nm)到中波红外波长的可调多光谱传感器或自适应焦平面阵列(3000–6000 nm)范围。表面光学轮廓测量表明,在经过加工的结构中,几毫米的平面度约为20–30 nm。设备上的单点光谱测量结果与模拟光学模型非常吻合。所制造的分布式布拉格反射器显示出%的反射率,这与理论反射率非常一致。在宽波长范围内表现出的高反射率使其适合用作宽带反射器。最后,我们介绍了基于这些分布式布拉格反射器的Fabry-Pérot滤光片的光学透射率建模结果。 [2015-0161]

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