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Photoconductive focal plane array based on HgTe quantum dots for fast and cost-effective short-wave infrared imaging

机译:基于HgTe光导焦平面阵列量子点的快速和成本效益短波红外成像

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HgTe nanocrystals, thanks to quantum confinement, present a broadly tunable band gap all over the infrared spectral range. In addition, significant efforts have been dedicated to the design of infrared sensors with an absorbing layer made of nanocrystals. However, most efforts have been focused on single pixel sensors. Nanocrystals offer an appealing alternative to epitaxially grown semiconductors for infrared imaging by reducing the material growth cost and easing the coupling to the readout circuit. Here we propose a strategy to design an infrared focal plane array from a single fabrication step. The focal plane array (FPA) relies on a specifically designed readout circuit enabling in plane electric field application and operation in photoconductive mode. We demonstrate a VGA format focal plane array with a 15 μm pixel pitch presenting an external quantum efficiency of 4–5% (15% internal quantum efficiency) for a cut-off around 1.8 μm and operation using Peltier cooling only. The FPA is compatible with 200 fps imaging full frame and imaging up to 340 fps is demonstrated by driving a reduced area of the FPA. In the last part of the paper, we discuss the cost of such sensors and show that the latter is only driven by labor costs while we estimate the cost of the NC film to be in the 10–20 € range.
机译:HgTe纳米晶体,由于量子限制,提供一个广泛的可调带隙红外光谱范围。努力一直致力于的设计红外传感器与吸收层制成的纳米晶体。专注于单一像素传感器。提供有吸引力的替代品,外延半导体红外成像的增长降低材料成本和缓解增长耦合的读出电路。一个策略来设计一个红外焦平面数组从一个制造步骤。平面阵列(FPA)依赖于具体读出电路使平面设计电场应用程序和操作光电导模式。焦平面阵列15μm像素间距外部量子效率的4 - 5%内部量子效率(15%)截止约1.8μm和操作使用珀尔帖冷却只有。全帧和成像340 fps证明了驾驶的面积减少平安险。此类传感器和显示后者的成本我们估计的时候仅仅是由劳动力成本数控的成本电影在10 - 20€的范围内。

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