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Tunable plasmon-induced transparency based on monolayer black phosphorus by bright-dark mode coupling

机译:通过明亮暗模式耦合的基于单层黑色磷的可调谐等离子体诱导的透明度

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We theoretically propose a compound metasurface structure consisting of a patterned black phosphorus (BP) sheet sandwiched by dielectrics, which can achieve a tunable plasmon-induced transparency (PIT) effect in the mid-infrared region. The PIT effect can be actively adjusted by changing the geometric parameters and the carrier concentration of BP. The mechanism of PIT originates from the near-field coupling between the bright mode and the dark mode. The numerical simulation results are highly consistent with the theoretical calculations of the coupled Lorentz oscillator model. In addition, our proposed structure system exhibits a strong dispersion accompanied with a group index of similar to 15, which provides a new strategy for slow light devices.
机译:理论上,我们提出了一种由夹在电介质的图案化的黑磷(BP)片组成的复合元表面结构,其可以在中红外区域中实现可调谐的等离子体诱导的透明度(凹坑)效应。可以通过改变几何参数和BP的载流子浓度来主动调整凹坑效果。坑机制来自明亮模式和暗模式之间的近场耦合。数值模拟结果与耦合的Lorentz振荡器模型的理论计算高度一致。此外,我们所提出的结构系统表现出强大的色散,伴随着类似于15的组指数,为慢灯装置提供了一种新的策略。

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