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Uncooled Focal Plane Array for Multiband IR Imaging Using Optical-Readout Bimaterial Cantilevers

机译:使用光学读出双材料悬臂进行多波段红外成像的非冷却焦平面阵列

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This paper presents the design, fabrication, and performance of a multiband infrared (IR) focal plane array (FPA) using microbimaterial cantilever as the sensitive pixel. Different from traditional uncooled IR FPA that works only at long wavelength IR, the working bandwidth of the presented FPA is extended to full band IR, covering the three IR atmospheric windows of 1–m, 3–m and 8–14 m simultaneously. The multiband performance is attributed to the elaborately designed multiband absorber consisting of a stacked layer of silicon nitride, chromium nanofilm, and gold mirror. The absorbing mechanism of the stacked layer is discussed in detail and testified by experimental results. Images of short-wavelength, middle-wavelength, and long-wavelength IR were captured successfully with the single FPA. The measured sensitivity and noise equivalent temperature difference of the FPA are m/K and 194.7 mK, respectively. [2014-0090]
机译:本文介绍了使用微生物材料悬臂作为敏感像素的多波段红外(IR)焦平面阵列(FPA)的设计,制造和性能。与仅在长波长IR下工作的传统非冷却式IR FPA不同,本文提出的FPA的工作带宽扩展到了全波段IR,同时覆盖了1 m,3 m和8-14 m的三个IR大气窗口。多频带性能归因于精心设计的多频带吸收器,该吸收器由氮化硅,铬纳米膜和金镜的堆叠层组成。详细讨论了叠层的吸收机理,并通过实验结果证明了这一点。使用单个FPA成功捕获了短波长,中波长和长波长IR的图像。 FPA的测量灵敏度和等效噪声温差分别为m / K和194.7 mK。 [2014-0090]

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