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Substrate-Sensitive Mid-infrared Photoresponse in Graphene

机译:石墨烯中底物敏感的中红外光响应

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We report mid-infrared photocurrent spectra of graphene nanoribbon arrays on SiO2 dielectrics showing dual signatures of the substrate interaction. First, hybrid polaritonic modes of graphene plasmons and dielectric surface polar phonons produce a thermal photocurrent in graphene with spectral features that are tunable by gate voltage, nanoribbon width, and light polarization. Second, phonon polaritons associated with the substrate are excited, which indirectly heat up the graphene, leading to a graphene photocurrent with fixed spectral features. Models for other commonly used substrates show that the responsivity of graphene infrared photodetectors can be tailored to specific mid-IR frequency bands by the choice of the substrate.
机译:我们报告了SiO2电介质上的石墨烯纳米带阵列的中红外光电流谱,显示了基体相互作用的双重特征。首先,石墨烯等离子体激元和介电表面极性声子的混合极化子模式在石墨烯中产生热光电流,其光谱特征可通过栅极电压,纳米带宽度和光偏振来调节。其次,与衬底相关的声子极化子被激发,从而间接加热石墨烯,从而产生具有固定光谱特征的石墨烯光电流。其他常用基材的模型表明,可以通过选择基材将石墨烯红外光电探测器的响应度调整为特定的中红外频段。

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