基于PbS胶体量子点的多光谱短波红外成像可切换双波段光电探测器

V. Pejović, Epimitheas Georgitzikis, P. Malinowski, P. Heremans, D. Cheyns
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引用次数: 0

摘要

在这项工作中,我们提出了一种基于PbS胶体量子点的光电探测器,可用于短波红外范围内的低成本,高分辨率多光谱成像。利用薄膜的通用溶液处理技术,我们制造了一种可切换的双通道双端光电探测器,可以与小间距CMOS读出阵列单片集成。与传统的快照多光谱图像传感器相比,其垂直堆叠结构提供了更高的空间分辨率。我们展示了基于传输矩阵方法的光学模拟结果,这使我们能够实现波长可调的窄带响应。我们通过在1-1.5 μm波长范围内的不同波段显示超过25%的EQE来证明光电探测器的操作及其易于调谐。这项工作证明了新兴的薄膜多光谱成像技术的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Switchable dual-band photodetector based on PbS colloidal quantum dots for multispectral short-wavelength infrared imaging
In this work, we present a photodetector based on PbS colloidal quantum dots which can be used for low-cost, high-resolution multispectral imaging in the short-wavelength infrared range. Using versatile solution-based processing of thin films, we fabricated a switchable, dual-channel, two-terminal photodetector that can be monolithically integrated with small-pitch CMOS readout arrays. Its vertically stacked structure provides higher spatial resolution compared to conventional snapshot multispectral image sensors. We show the results of the optical simulations based on the transfer matrix method, which allowed us to achieve a wavelength-tunable narrowband response. We demonstrate the operation of the photodetector and its facile tunability by showing an EQE of more than 25% at different bands in the wavelength range of 1-1.5 μm. This work demonstrates the potential of the emerging thin-film technology for multispectral imaging.
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