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Quantum-Enhanced Second-Order Nonlinearity in Graphene: The Role of Wave Momentum and DC Biasing

机译:石墨烯中的量子增强二阶非线性:波动量和直流偏置的作用

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摘要

A comprehensive and rigorous analysis is presented for the study of terahertz photomixing process in a biased graphene layer, when two obliquely incident waves are used as primary excitation. The second-order nonlinearity tensor of graphene associated with the difference frequency generation (DFG) is calculated to evaluate the amount of induced terahertz current density. In this analysis, we are calculating the significant contribution of the photon drag effect to the DFG and consequently to the terahertz wave generation. We also examine the effect of DC current biasing on the DFG as the Fermi energy level of graphene changes. Our results show that the DFG in graphene can be enhanced by at least two orders of magnitude when the Fermi energy level of graphene becomes equal to the energy of incident photon. This paper provides more insight into the contributing factors in the DFG process and allows the realization of more optimal graphene-based photomixing devices.
机译:当使用两个倾斜入射波作为一次激发时,对偏压石墨烯层中太赫兹光混合过程的研究进行了全面而严格的分析。计算与差频生成(DFG)相关的石墨烯的二阶非线性张量,以评估感应的太赫兹电流密度的大小。在此分析中,我们正在计算光子拖曳效应对DFG的重要贡献,从而对太赫兹波的产生也有重要作用。我们还研究了随着石墨烯费米能级的变化,直流电流对DFG的影响。我们的结果表明,当石墨烯的费米能级等于入射光子的能级时,石墨烯中的DFG可以提高至少两个数量级。本文提供了对DFG工艺中影响因素的更多见解,并允许实现更优化的基于石墨烯的光混合设备。

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