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Double-dark-resonance-enhanced Kerr nonlinearity in a single layer of graphene nanostructure

机译:单层石墨烯纳米结构中双暗共振增强的Kerr非线性

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摘要

In this paper, a novel scheme is proposed for the giant enhanced Kerr nonlinearity in a single layer of graphene nanostructure based on quantum optics and nonlinear optical sciences. The linear and the nonlinear susceptibility of the monolayer graphene system are presented in details by using the density matrix method and perturbation theory. After deriving the equations of motion in the steady-state regime, we analytically solve the linear and nonlinear susceptibility of the system. Our numerical results show that the giant enhanced Kerr nonlinearity can be obtained in the double-dark-resonance condition with zero linear and nonlinear absorption. Our results may have potential applications in quantum information science in infrared and terahertz regimes.
机译:本文提出了一种基于量子光学和非线性光学科学的单层石墨烯纳米结构中增强的Kerr非线性增强的新方案。利用密度矩阵法和微扰理论,详细介绍了单层石墨烯体系的线性和非线性敏感性。推导稳态状态下的运动方程后,我们分析性地解决了系统的线性和非线性敏感性。我们的数值结果表明,在具有零线性和非线性吸收的双暗共振条件下,可以获得巨大的增强的Kerr非线性。我们的研究结果在红外和太赫兹波段的量子信息科学中可能具有潜在的应用。

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