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Terahertz Optical Bistability in the Metal Nanoparticles-Graphene Nanodisks-Quantum Dots Hybrid Systems

机译:金属纳米颗粒 - 石墨烯纳米丝盘 - 量子点混合系统中的太赫兹光学双稳态

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摘要

We theoretically investigate the optical bistability in the metal nanoparticles-graphene nanodisks-quantum dots hybrid plasmonic system in the infrared regime of the electromagnetic radiation. The quantum dot is considered to be a three-level atomic-like system of Λ type interacting with probe and control fields. By using the standard model of the optical bistability where a nonlinear medium is situated in an optical ring cavity, we numerically solve the equation of motion for the density matrix elements that describe the dynamics of the system in steady-state conditions along with the boundary conditions of the cavity to analyze the optical bistability of the system. The effect of the geometrical features of the system and the parameters of the interacting fields including the strength and detuning of the fields on the optical bistability behavior are investigated. Our proposed hybrid plasmonic system shows an ultralow-threshold controllable optical bistability, providing a promising platform for optical bistable devices at the terahertz, such as all-optical switches and biosensors.
机译:理论上,在电磁辐射的红外方案中,理论上研究了金属纳米粒子 - 石墨烯纳米管中的光学双峰纳米管 - 量子点混合等离子体系统。量子点被认为是与探针和控制场相互作用的λ型的三级原子样系统。通过使用非线性介质位于光环腔中的光学双稳定性的标准模型,我们在数值上解决了对稳态条件中系统动态的密度矩阵元件的运动方程以及边界条件腔的分析系统的光学双态性。研究了系统的几何特征和包括强度和损伤的相互作用场的参数的影响,在光学双稳态行为上进行了强度和损伤。我们所提出的混合等离子体系统显示出超级阈值可控的光学双稳态,为Terahertz的光学双稳态设备提供了一个有希望的平台,例如全光开关和生物传感器。

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