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A new photodetector structure based on graphene nanomeshes: an ab initio study

机译:基于石墨烯纳米网的新光电探测器结构:AB ININIO研究

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摘要

Recent experiments suggest graphene-based materials as candidates in future electronic and optoelectronic devices. In this paper, we propose to investigate new photodetectors based on graphene nanomeshes (GNMs). Density functional theory (DFT) calculations are performed to gain insight into electronic and optical characteristics of various GNM structures. To investigate the device-level properties of GNMs, their current–voltage characteristics are explored by DFT-based tight-binding (DFTB) in combination with non-equilibrium Green’s function (NEGF) methods. Band structure analysis shows that GNMs have both metallic and semiconducting properties depending on the arrangements of perforations. Also, absorption spectrum analysis indicates attractive infrared peaks for GNMs with semiconducting characteristics, making them better photodetectors than graphene nanoribbon (GNR)-based alternatives. The results suggest that GNMs can be potentially used in mid-infrared detectors with specific detectivity values that are 100-fold that of graphene-based devices and 1000-fold that of GNR-based devices. Hence, the special properties of graphene combined with the quantum feathers of the perforation makes it suitable for optical devices.
机译:最近的实验表明了基于石墨烯的材料作为未来电子和光电器件的候选者。在本文中,我们建议基于石墨烯纳米网(GNMS)来研究新的光电探测器。进行密度泛函理论(DFT)计算以获得各种GNM结构的电子和光学特性的洞察。为了研究GNMS的器件级特性,通过基于DFT的紧密绑定(DFTB)与非平衡绿色功能(NegF)方法组合探索其电流 - 电压特性。带结构分析表明,GNMS具有金属和半导体性质,这取决于穿孔的布置。此外,吸收光谱的分析表明与半导体特性GNMs吸引力红外峰,使它们比石墨烯纳米带(GNR)系的替代品更好的光电检测器。结果表明,GNMS可以潜在地用于中红外探测器,具有基于石墨烯的器件的100倍的特定探测值和基于GNR的设备的1000倍。因此,石墨烯与穿孔的量子羽毛结合的特殊性质使其适用于光学装置。

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