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Silicon-graphene conductive photodetector with ultra-high responsivity

机译:具有超高响应度的硅 - 石墨烯导电光电探测器

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Graphene is attractive for realizing optoelectronic devices, including photodetectors because of the unique advantages. It can easily co-work with other semiconductors to form a Schottky junction, in which the photo-carrier generated by light absorption in the semiconductor might be transported to the graphene layer efficiently by the build-in field. It changes the graphene conduction greatly and provides the possibility of realizing a graphene-based conductive-mode photodetector. Here we design and demonstrate a silicon-graphene conductive photodetector with improved responsivity and response speed. An electrical-circuit model is established and the graphene-sheet pattern is designed optimally for maximizing the responsivity. The fabricated silicon-graphene conductive photodetector shows a responsivity of up to ~105A/W at room temperature (27?°C) and the response time is as short as ~30?μs. The temperature dependence of the silicon-graphene conductive photodetector is studied for the first time. It is shown that the silicon-graphene conductive photodetector has ultra-high responsivity when operating at low temperature, which provides the possibility to detect extremely weak optical power. For example, the device can detect an input optical power as low as 6.2?pW with the responsivity as high as 2.4?×?107?A/W when operating at ?25?°C in our experiment.
机译:石墨烯对于实现光电器件,包括光电探测器,包括光电探测器,因为有了独特的优势。它可以容易地与其他半导体共同合作以形成肖特基结,其中通过半导体中的光吸收产生的光载体可以通过构建场有效地传送到石墨烯层。它大大改变了石墨烯传导,并提供了实现基于石墨烯的导电模式光电探测器的可能性。在这里,我们设计并展示了一种具有改善的响应性和响应速度的硅 - 石墨烯导电光电探测器。建立电路模型,石墨烯片状图案最佳地设计,用于最大化响应率。制造的硅 - 石墨烯导电光电探测器在室温(27Ω℃)下最高〜105A / W的响应率,并且响应时间短至约30≤μs。首次研究硅 - 石墨烯导电光电探测器的温度依赖性。结果表明,在低温下操作时,硅 - 石墨烯导电光电探测器具有超高响应度,这提供了检测极弱的光功率的可能性。例如,该装置可以检测到低至6.2°的输入光功率,响应值高达2.4?×107?A / W在我们的实验中操作时。

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