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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Ultrafast and low-power plasmon-soliton switching based on two-dimensional MoS2 nanostructure
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Ultrafast and low-power plasmon-soliton switching based on two-dimensional MoS2 nanostructure

机译:基于二维MOS2纳米结构的超快和低功率等离子体 - 孤子开关

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摘要

The nonlinear propagation in a plasmonic nanostructure composed of two closely molybdenum disulfide (MoS2) sheets is investigated numerically using perturbation expansion of Maxwell's equations. Because of the extraordinary nonlinear properties of monolayer MoS2, in particular significant Kerr effect, the production and propagation of dissipative plasmon-solitons in such a nanostructure is demonstrated. Considering the linear and nonlinear operation regimes, it is shown that by increasing the input light intensity, which leads to the appearance of the nonlinear correction terms in the MoS2 conductivity, the symmetry of such a coupler is breaking, and due to the change of the power coupling rate between two sheets, this nanostructure can operate as an all-optical nanoswitch. Compact dimensions and high nonlinearity of the proposed nanoswitch can provide us an ultra-high- speed and low-power switching operation. (C) 2017 Optical Society of America
机译:使用麦克斯韦方程的扰动膨胀,在数值上研究了由两个紧密钼二硫化物(MOS2)片组成的等离子体纳米结构中的非线性繁殖。 由于单层MOS2的非凡非线性性质,特别是显着的KERR效应,证明了这种纳米结构中的耗散等离子体溶胶的产生和传播。 考虑到线性和非线性操作制度,示出了通过增加输入光强度,这导致MOS2导电率下的非线性校正项的外观,这种耦合器的对称性是断裂,并且由于变化 两张纸之间的电力耦合速率,该纳米结构可以作为全光纳米开关操作。 紧凑的尺寸和所提出的纳米开关的高度非线性可以为我们提供超高速和低功耗的开关操作。 (c)2017年光学学会

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