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Advanced Imaging Systems Programs at DARPA MTO

机译:DARPA MTO的高级成像系统节目

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In this paper, we review a few selected imaging technology development programs at the Defense Advanced Research Projects Agency (DARPA) in the reflective visible to the emissive/thermal long wave infrared (LWIR) spectral bands. For the reflective visible band, results are shown for two different imagers: a gigapixel monocentric multi-scale camera design that solves the scaling issues for a high pixel count, and a wide field of view and a single photon detection camera with a large dynamic range. Also, a camera with broadband capability covering both reflective and thermal bands (0.5 μm to 5.0 μm) with >80% quantum efficiency is discussed. In the emissive/thermal band, data is presented for both uncooled and cryogenically cooled LWIR detectors with pixel pitches approaching the fundamental detection limits. By developing wafer scale manufacturing processes and reducing the pixel size of uncooled thermal imagers, it is shown that an affordable camera on a chip, capable of seeing through obscurants in day or night, is feasible. Also, the fabrication and initial performance of the world's first 5 μm pixel pitch LWIR camera is discussed. Lastly, we use an initial model to evaluate the signal to noise ratio and noise equivalent differential temperature as a function of well capacity to predict the performance for this thermal imager.
机译:在本文中,我们在防御高级研究项目机构(DARPA)中审查了一些选定的成像技术开发计划,该技术在发光/热长波红外(LWIR)光谱带上可见的反射率。对于反射可见频段,结果显示为两个不同的成像仪:一个简单的单眼多尺度相机设计,可以解决高像素计数的缩放问题,以及具有大动态范围的宽视野和单个光子检测相机。此外,讨论了具有宽带能力的相机,覆盖具有> 80%量子效率的反射和热带(0.5μm至5.0μm)。在发光/热带中,为具有像素间距的未冷却和低温冷却的LWIR探测器提出了数据,该探测器接近基本检测限。通过开发晶片规模制造过程并减少未冷却热成像仪的像素尺寸,显示在白天或夜间能够通过蒙昧主义的芯片上的实惠的相机是可行的。此外,讨论了世界上第一个5μm像素间距LWIR相机的制造和初始性能。最后,我们使用初始模型来评估信噪比和噪声等效差分温度,作为预测该热成像器的性能的井的函数。

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