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Development of High-Performance Graphene-HgCdTe Detector Technology for Mid-wave Infrared Applications

机译:中波红外应用的高性能石墨烯-HGCDTE探测器技术的开发

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High performance detector technology is being developed for sensing over the mid-wave infrared (MWIR) band for NASA Earth Science, defense, and commercial applications. The graphene-based HgCdTe detector technology involves the integration of graphene with HgCdTe photodetectors that combines the best of both materials, and allows for higher MWIR (2-5 μm) detection performance compared with photodetectors using only HgCdTe material. The interfacial barriers between the HgCdTe-based absorber and the graphene act as a tunable rectifier that reduces the recombination of photogenerated carriers in the detector. The graphene layer also acts as high mobility channel that whisks away carriers before they recombine, further enhancing detection performance. This makes them much more practical and useful for MWIR sensing applications such as remote sensing and earth observation, e.g., in smaller satellite platforms (CubeSat) for measurement of thermal dynamics with better spatial resolution. The objective of this work is to demonstrate graphene-based HgCdTe room temperature MWIR detectors and arrays through modeling, material development, and device optimization. The primary driver for this technology development is the enablement of a scalable, low cost, low power, and small footprint infrared technology component that offers high performance, while opening doors for new earth observation measurement capabilities.
机译:正在开发高性能探测器技术,用于对美国宇航局科学,防御和商业应用的中波红外(MWIR)频段进行感应。基于石墨烯的HGCDTE检测器技术涉及石墨烯与HGCDTE光电探测器的整合,该储备滤波器结合了最佳材料,并且与仅使用HGCDTE材料的光电探测器相比,允许更高的MWIR(2-5μm)检测性能。基于HGCDTE的吸收体和石墨烯之间的界面屏障用作可调谐整流器,其减少了检测器中光发生载体的重组。石墨烯层还用作高迁移率通道,其致函载体在重组之前,进一步提高检测性能。这使得它们对MWIR感测应用更实用,可用于诸如遥感和地球观察,例如较小的卫星平台(立方体),用于测量具有更好的空间分辨率的热动态。这项工作的目的是通过建模,材料开发和设备优化来展示基于石墨烯的HGCDTE室温MWIR探测器和阵列。该技术开发的主要驱动因素是实现可扩展,低成本,低功耗和小型红外技术组件,可提供高性能,同时为新地球观测测量功能开放门。

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