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Uncooled infrared detectors and focal plane arrays

机译:未冷却的红外探测器和焦平面阵列

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摘要

Abstract: Over the past several years, uncooled IR detectors and focal plane arrays have been rapidly developed. Impressive progress has been made in both resistive microbolometers and pyroelectric thin-film detectors with noise equivalent temperature differences projected to be 10 to 20 mK with F/1 optics for such structures. Noise equivalent temperature of 50 mK bulk pyroelectric detectors and thin film resistive microbolometers are already demonstrated and in production. Other novel schemes, such as bimaterial capacitors, are also promising for uncooled IR detection. The US Army Research Laboratory is involved in developing ferroelectric materials to take advantage of the pyroelectric properties. The goal is to develop crystal oriented thin films to further improve detector performance. In this presentation, the operating principle of resistive microbolometers and pyroelectric detectors, and recent progress of uncooled RI focal plane arrays are discussed. In addition, the uncooled RI detector program at the Army Research Laboratory, that includes research facilities for and research efforts toward uncooled detectors and focal plane arrays is presented. !17
机译:摘要:在过去的几年中,非制冷的红外探测器和焦平面阵列得到了迅速的发展。在电阻微测辐射热计和热电薄膜探测器中都取得了令人印象深刻的进步,对于此类结构,使用F / 1光学器件的噪声等效温度差预计为10至20 mK。 50 mK体积热释电探测器和薄膜电阻微辐射热计的噪声等效温度已经得到证明,并已投入生产。其他新颖的方案,例如双材料电容器,也有望用于未冷却的IR检测。美国陆军研究实验室参与开发铁电材料以利用热电特性。目的是开发晶体取向的薄膜,以进一步提高检测器性能。在本演示中,将讨论电阻式微辐射热计和热电探测器的工作原理,以及未冷却的RI焦平面阵列的最新进展。此外,还介绍了陆军研究实验室的未冷却RI探测器计划,该计划包括用于未冷却探测器和焦平面阵列的研究设施和研究工作。 !17

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