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Active Manipulating propagation in the graphene hybrid plasmonic waveguides in mid-infrared region

机译:中红外区域中石墨烯混合等离子体波导中的主动操纵传播

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A novel hybrid plasmonic waveguide of the graphene-coated V-groove and waveguide structure is proposed. The subwavelength confinements and the propagation of the graphene surface plasmon polaritons modes of the hybrid graphene-coated waveguide are reached. The mode field energies can be well confined in the V-groove or the waveguide and be adjusted by varying the chemical potential of graphene. The mode confinement becomes weaker and the propagation length gets longer as the chemical potential of grapheme increasing, In addition, adjusting the radius of the waveguide and the frequencies could change the mode propagation and the higher mode is achieved. The finite element method (FEM) has been employed to study the mode distributions and electromagnetic responses of our designs at mid-infrared frequencies.
机译:提出了一种新的石墨烯涂覆的V沟槽和波导结构的混合等离子体波导。达到了杂交石墨烯涂覆波导的石墨烯表面等离子体极化骨种的亚壳围绕和繁殖。模式场能量可以很好地限制在V沟槽或波导中,并通过改变石墨烯的化学电位来调节。模式限制变弱,传播长度随着图形的化学电位增加而变较长,另外,调节波导的半径和频率可以改变模式传播并且实现更高模式。已经采用了有限元方法(FEM)来研究我们在中红外频率下设计的模式分布和电磁响应。

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