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Numerical study on graphene nanoribbon quantum well-in-well interband and intersubband photodetector

机译:石墨烯纳米带量子井间带间和子带间光探测器的数值研究

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The optical properties of well in well structure formed by armchair graphene nanoribbons (A-GNRs) are studied. A-GNR sheet is modeled by 3rd nearest tight-binding parameter. The optical properties are studied by employing the self-consistent simulation between Non-equilibrium Green's function method and electrostatic Hartree potential distribution. The proposed device structure can incorporate both of the interband and intersubband transitions depending on a back gate voltage. The optical absorption frequency can be varied through the back gate voltage. The confined energy states and quantum efficiency of the device have been determined along with the dark current dependence on the bias voltages.
机译:研究了扶手椅石墨烯纳米带(A-GNR)形成的孔结构中孔的光学性质。 A-GNR工作表由第3个最近的紧密绑定参数建模。通过采用非平衡格林函数方法与静电Hartree电势分布之间的自洽模拟研究了光学性质。所提出的器件结构可以根据背栅电压并入带内和子带间过渡。可以通过背栅电压来改变光吸收频率。已经确定了器件的受限能量状态和量子效率,以及暗电流对偏置电压的依赖性。

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