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Near-zero-index nonlinear surface polaritons controlled by the surface conductivity of graphene

机译:由石墨烯的表面电导率控制的近零指数非线性表面极性恒星

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摘要

We study transverse magnetic polarized nonlinear surface polaritons (NLSP) propagating along the interface (a conductive layer of zero thickness) of a magnetic optically linear medium and a magnetic optically nonlinear medium with saturable permittivity. We obtained the exact solution of Maxwell's equations for the NLSP and on this base investigated the dependences of the NLSP propagation constant on the NLSP energy flux and on the value of the dielectric permittivity at the surface of the nonlinear medium for different values of sheet conductance. The important for quantum information processing near-zero-index condition n ≈ 0 can be achieved if the products of permeability and permittivity of each medium are both negative. For both Kerr-like and saturable nonlinearities, the NLSP propagation constant trace for zero-conductivity splits into two traces for non-zero conductivity. Near the n ≈ 0 condition, the NLSP propagation constant is highly sensitive to the NLSP intensity as well as to the sheet conductance value.
机译:我们研究沿磁性光学线性介质的界面(零厚度的导电层)和具有可饱和介电常数的磁性光学非线性介质的横向磁极化非线性表面极化子(NLSP)传播。我们获得了Maxwell的NLSP方程的精确解决方案,并且在该基础上研究了NLSP传播常数对NLSP能量通量的依赖性以及用于不同值的片状电导值的非线性介质表面的介电常数的值。如果每个介质的渗透性和介电常数均为负数,则可以实现对零次折射率条件N≈0的量子信息处理的重要性。对于kerr样和可饱和非线性,NLSP传播常数迹线用于零导电的分为两个迹线,用于非零电导率。近n≈5条件,NLSP传播常数对NLSP强度以及纸张电导值非常敏感。

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