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Relative performance analysis of IR FPA technologies from the perspective of system level performance

机译:从系统级性能角度看红外FPA技术的相对性能分析

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摘要

The majority of high performance infrared systems today utilize FPAs composed of intrinsic direct band gap semiconductor photon detectors such as MCT or InSb. Quantum well detector technologies such as QWIPs, QDIPs, and SLS photodetectors are potentially lower cost alternatives to MCT and InSb, but the relative performance of these technologies has not been sufficiently high to allow widespread adoption outside of a handful of applications. While detectors are often evaluated using figures of merit such as NETD or D*, these metrics, which include many underlying aspects such as spectral quantum efficiency, dark current, well size, MTF, and array response uniformity, may be far removed from the performance metrics used to judge performance of a system in an operationally relevant scenario. True comparisons of performance for various detector technologies from the perspective of end-to-end system performance have rarely been conducted, especially considering the rapid progress of the newer quantum well technologies.
机译:今天的大多数高性能红外系统利用由内在直接带隙半导体光子探测器(如MCT或INSB组成的FPA)。量子阱探测器技术,如QWIPS,QDIP和SLS光电探测器是MCT和INSB的含量较低的成本替代品,但这些技术的相对性能并未足够高,以便广泛采用少数应用。虽然使用诸如NETD或D *的优点的图来评估探测器,但这些度量包括诸如诸如光谱量子效率,暗电流,井大小,MTF和阵列响应均匀的许多潜在方面,可能远离性能用于判断在可操作相关的场景中系统的性能的指标。从端到端系统性能的角度来看,各种探测器技术的性能的真正比较很少进行,特别是考虑到更新量子井技术的快速进展。

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