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Design and measurements of the absorption section of an up-conversion device based on PbSe quantum-dots

机译:基于PbSe量子点的上转换器件吸收区的设计与测量

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The absorption section of quantum dots (QD) based night vision devices consists of the OQ sensitizing layer which absorbs the Infrared radiation, the substrate on which the QD are placed, the electrode and, in several cases, a blocking layer that prevents the flow of charge carriers toward the inverse direction. The absorption section plays a dominant role in determining the absorption spectral ranges and the signal-to-noise ratios of the devices. In this work, we show the design of the absorption section Of a short wavelength infrared (SWIR) to visible direct up-conversion device. The growth was 300 nm thick PbSe quantum dots (QD) separated by PbSe grain boundaries layer on intrinsic GaAs substrate. Photo-luminescence and absorption measurements suggested that the quantum dots spectral response is blue-shifted to the spectral range in which the up-conversion device is operated i.e., SWIR. We preformed sheet resistance measurements in dark and under illumination that showed that the device exhibits an improvement in the signal-to-noise ratio after annealing ion chloride atmosphere compare with annealing in oxygen atmosphere. These samples have great potential for the use as the absorption section of low-cost, compact, low power consumption, and cooler free up-conversion devices. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于量子点(QD)的夜视仪的吸收部分由吸收红外辐射的OQ增敏层,放置QD的基板,电极以及在某些情况下阻止流动的QQ的阻挡层组成载流子朝相反的方向。吸收部分在确定设备的吸收光谱范围和信噪比方面起主要作用。在这项工作中,我们展示了短波红外(SWIR)到可见光直接上转换装置的吸收部分的设计。生长为300 nm厚的PbSe量子点(QD),由本征GaAs衬底上的PbSe晶界层分隔开。光致发光和吸收测量表明,量子点的光谱响应被蓝移到其中操作上转换装置即SWIR的光谱范围。我们在黑暗和光照下进行了薄层电阻测量,结果表明,与在氧气气氛中进行退火相比,在离子氯化物气氛中进行退火后,该器件的信噪比有所改善。这些样品具有用作低成本,紧凑,低功耗和无冷却器的上转换装置的吸收部分的巨大潜力。 (C)2015 Elsevier B.V.保留所有权利。

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