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Controllable optical bistability and multistability in a slab defected with monolayer graphene nanostructure

机译:具有单层石墨烯纳米结构缺陷的平板中可控的光学双稳态和多稳定性

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摘要

In this paper, the optical bistability (OB) and optical multistability (OM) properties of weak probe light in a defect dielectric medium doped by four-level graphene nanostructure is theoretically discussed. The double dark resonance can arise by linear polarized control laser fields which consist of linear left and right circularly polarized light. We show that by adjusting the Rabi-frequencies of control fields, frequency detuning of bichromatic electric fields, the intensity threshold and hysteric curves of OB and OM can be manipulated. Moreover, the thickness of the slab is considered as a controllable parameter which can impact the OB and OM behaviors of weak probe light in a defect slab. We find that the transition from OB to OM or vice versa can be possible by adjusting the thickness of the slab. Our results may provide some new application on Nano-scale devices in future all-optical communication and quantum information technologies.
机译:本文从理论上讨论了在四能级石墨烯纳米结构掺杂的缺陷电介质中弱探测光的光学双稳性和光学多稳定性。线性偏振控制激光场会产生双暗共振,该线性偏振控制激光场由线性左右圆偏振光组成。我们表明,通过调节控制磁场的拉比频率,双色电场的频率失谐,可以控制OB和OM的强度阈值和磁滞曲线。此外,平板的厚度被认为是可控制的参数,它可以影响缺陷平板中弱探测光的OB和OM行为。我们发现,通过调节板坯的厚度,可以实现从OB到OM的转变,反之亦然。我们的研究结果可能会为未来的全光通信和量子信息技术在纳米级设备上提供一些新的应用。

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