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Highly sensitive hot electron bolometer based on disordered graphene

机译:基于无序石墨烯的高灵敏度热电子辐射计

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摘要

A bolometer is a device that makes an electrical resistive response to the electromagnetic radiation resulted from a raise of temperature due to heating. The combination of the extremely weak electron-phonon interactions along with its small electron heat capacity makes graphene an ideal material for applications in ultra-fast and sensitive hot electron bolometer. However, a major issue is that the resistance of pristine graphene weakly depends on the electronic temperature. We propose using disordered graphene to obtain a strongly temperature dependent resistance. The measured electrical responsivity of the disordered graphene bolometer reaches 6 × 106 V/W at 1.5 K, corresponding to an optical responsivity of 1.6 × 105 V/W. The deduced electrical noise equivalent power is 1.2 , corresponding to the optical noise equivalent power of 44 . The minimal device structure and no requirement for high mobility graphene make a step forward towards the applications of graphene hot electron bolometers.
机译:辐射热计是一种对因加热导致温度升高而产生的电磁辐射产生电阻响应的设备。极弱的电子-声子相互作用以及较小的电子热容量的结合使石墨烯成为超快和灵敏的热电子辐射热测量仪应用的理想材料。然而,主要问题是原始石墨烯的电阻弱地取决于电子温度。我们建议使用无序石墨烯以获得强烈的温度依赖性电阻。无序石墨烯辐射热计在1.5 K时测得的电响应达到6×10 6 V / W,对应的光响应为1.6×10 5 V / W。推导的电噪声等效功率为1.2,对应于44的光学噪声等效功率。最小的器件结构和对高迁移率石墨烯的要求,使石墨烯热电子辐射计的应用迈出了一步。

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