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Geiger-mode APD single-photon cameras for 3D laser radar imaging

机译:盖革模式APD单光子相机用于3D激光雷达成像

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We describe the design and performance of short-wave infrared 3D imaging cameras with focal plane arrays (FPAs) based on Geiger-mode avalanche photodiodes (GmAPDs) with single photon sensitivity for laser radar imaging applications. The FPA pixels incorporate InP/InGaAs(P) GmAPDs for the detection of single photons with high efficiency and low dark count rates. Based on the design of the GmAPD detectors, FPAs have been optimized for source wavelengths near either 1.0 µm or 1.5 µm. We present results and attributes of fully integrated camera sub-systems with 32 × 32 and 128 × 32 formats, which have 100 µm pitch and 50 µm pitch, respectively. We also address the sensitivity of the fundamental GmAPD detectors to radiation exposure, including recent results that correlate detector active region volume to sustainable radiation tolerance levels. For GmAPD detector designs that are compatible with our existing FPA platform, these discrete device results indicate that sensors with our current level of performance can be designed to tolerate radiation exposure of at least 8 krad with acceptable levels of dark count rate elevation.
机译:我们描述了基于焦平面模式雪崩光电二极管(GmAPDs)的焦平面阵列(FPA)的短波红外3D成像相机的设计和性能,该相机具有单光子灵敏度,适用于激光雷达成像应用。 FPA像素包含InP / InGaAs(P)GmAPD,可高效,低暗计数率检测单个光子。根据GmAPD检测器的设计,已经针对近1.0 µm或1.5 µm的光源波长对FPA进行了优化。我们介绍了具有32×32和128×32格式的全集成相机子系统的结果和属性,它们分别具有100 µm的间距和50 µm的间距。我们还讨论了基本GmAPD检测器对辐射暴露的敏感性,包括最近的结果,这些结果将检测器的有效区域体积与可持续的辐射耐受水平相关联。对于与我们现有FPA平台兼容的GmAPD检测器设计,这些离散的设备结果表明,具有我们当前性能水平的传感器可以设计为在可接受的暗计数速率提升水平下,承受至少8 krad的辐射。

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