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1024 × 1024 Format pixel co-located simultaneously readable dual-band QWIP focal plane

机译:1024×1024格式像素位于同一位置的同时可读双波段QWIP焦平面

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This paper reports the first demonstration of the megapixel-simultaneously-readable and pixel-co-registered dual-band quantum well infrared photodetector (QWIP) focal plane array (FPA). The dual-band QWIP device was developed by stacking two multi-quantum-well stacks tuned to absorb two different infrared wavelengths. The full width at half maximum (FWHM) of the mid-wave infrared (MWIR) band extends from 4.4 to 5.1 μm and the FWHM of a long-wave infrared (LWIR) band extends from 7.8 to 8.8 μm. Dual-band QWIP detector arrays were hybridized with custom fabricated direct injection read out integrated circuits (ROICs) using the indium bump hybridization technique. The initial dual-band megapixel QWIP FPAs were cooled to 70 K operating temperature. The preliminary data taken from the first megapixel QWIP FPA has shown system NEΔT of 27 and 40 mK for MWIR and LWIR bands, respectively.
机译:本文报道了百万像素同时可读和像素共配准的双波段量子阱红外光电探测器(QWIP)焦平面阵列(FPA)的首次演示。通过将两个经过调谐以吸收两个不同红外波长的多量子阱堆栈堆叠在一起,开发出了双频带QWIP器件。中波红外(MWIR)波段的半峰全宽(FWHM)从4.4扩展到5.1μm,长波红外(LWIR)波段的FWHM从7.8扩展到8.8μm。使用铟凸点杂交技术,将双带QWIP检测器阵列与定制的直接注入读出集成电路(ROIC)进行杂交。将最初的双波段百万像素QWIP FPA冷却到70 K工作温度。从第一百万像素QWIP FPA获得的初步数据显示,对于MWIR和LWIR频段,系统的NEΔT分别为27和40 mK。

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