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Thin-Film Quantum Dot Photodiode for Monolithic Infrared Image Sensors

机译:用于单片红外图像传感器的薄膜量子点光电二极管

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摘要

Imaging in the infrared wavelength range has been fundamental in scientific, military and surveillance applications. Currently, it is a crucial enabler of new industries such as autonomous mobility (for obstacle detection), augmented reality (for eye tracking) and biometrics. Ubiquitous deployment of infrared cameras (on a scale similar to visible cameras) is however prevented by high manufacturing cost and low resolution related to the need of using image sensors based on flip-chip hybridization. One way to enable monolithic integration is by replacing expensive, small-scale III–V-based detector chips with narrow bandgap thin-films compatible with 8- and 12-inch full-wafer processing. This work describes a CMOS-compatible pixel stack based on lead sulfide quantum dots (PbS QD) with tunable absorption peak. Photodiode with a 150-nm thick absorber in an inverted architecture shows dark current of 10−6 A/cm2 at −2 V reverse bias and EQE above 20% at 1440 nm wavelength. Optical modeling for top illumination architecture can improve the contact transparency to 70%. Additional cooling (193 K) can improve the sensitivity to 60 dB. This stack can be integrated on a CMOS ROIC, enabling order-of-magnitude cost reduction for infrared sensors.
机译:在科学,军事和监视应用中,红外波长范围的成像已成为基础。当前,它是新兴产业的关键推动力,例如自主移动性(用于障碍物检测),增强现实(用于眼睛跟踪)和生物识别技术。然而,由于与使用基于倒装芯片杂交的图像传感器的需求有关的高制造成本和低分辨率,阻止了红外摄像机的普遍部署(在规模上类似于可见摄像机)。实现单片集成的一种方法是用兼容8英寸和12英寸全晶片工艺的窄带隙薄膜代替昂贵的,基于III-V的小型检测器芯片。这项工作描述了基于具有可调吸收峰的硫化铅量子点(PbS QD)的CMOS兼容像素堆栈。反向结构中具有150nm厚吸收层的光电二极管在-2V反向偏压下的暗电流为10 -6 A / cm 2 ,1440处的EQE大于20%纳米波长。顶部照明架构的光学建模可以将接触透明度提高到70%。额外的冷却(193 K)可以将灵敏度提高到60 dB。该堆栈可以集成在CMOS ROIC上,从而可以降低红外传感器的数量级成本。

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