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On-Chip Ultrafast Plasmonic Graphene Hot Electron Bolometric Photodetector

机译:片上超快等级石墨烯热电子气仪光电探测器

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We investigate a waveguide-integrated plasmonic graphene photodetector operating based on the hot carrier photo-bolometric effect, which is characterized simultaneously by high responsivity on the scale of hundreds of A/W and high speed on the scale of 100’s of GHz that is limited only by the product of the electronic heat capacitance and thermal resistance. We develop a theory of the bolometric effect originating from the band nonparabolicity of graphene and estimate responsivity due to the bolometric effect, which is shown to significantly surpass the responsivity of the coexisting photoconductive effect, thus convincingly demonstrating the dominance of the bolometric effect. Based on the theory, we propose a novel detector configuration based on a hybrid waveguide that allows for efficient absorption in graphene over a short distance and subsequently a large change of conductivity. The results demonstrate the potential of graphene for high-speed communication systems.
机译:我们研究了一种基于热载体光管效应的波导集成的等离子体石墨烯光电探测器,其特征在于,在仅限GHz的100尺寸的尺度上,通过高响应度同时进行高响应度通过电子热电容和热阻的乘积。我们开发了源自​​石墨烯的带非分解性的致孔效应的理论,并由于致血管效应而估计响应性,这被证明显着超越共存感光效果的响应率,从而令人信服地展示了散孔效应的优势。基于该理论,我们提出了一种基于混合波导的新型探测器配置,其允许在短距离上有效地吸收石墨烯并随后发生大的导电性变化。结果表明了高速通信系统石墨烯的潜力。

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