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Strong Coupling of Surface Plasmon Polaritons in Monolayer Graphene Sheet Arrays

机译:单层石墨烯片阵列中表面等离激元极化子的强耦合

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Here we investigate theoretically and numerically the coupling between surface plasmon polaritons (SPPs) in monolayer graphene sheet arrays that have a period much smaller than the wavelength. We show that when the collective SPP is excited with an out-of-phase illumination, the beam tends to propagate toward the opposite direction of the Bloch momentum, reflecting a negative coupling between the constituent SPPs. In contrast, for in-phase illumination, the incident beam is split into two collective SPPs that are highly collimated and display low propagation loss. Moreover, the coupling between the individual SPPs results in a reduction of the modal wavelength of the SPP in comparison with that of a single graphene sheet.
机译:在这里,我们从理论和数值上研究周期短于波长的单层石墨烯片阵列中表面等离振子极化子(SPP)之间的耦合。我们表明,当用异相照明激发集体SPP时,光束倾向于朝Bloch动量的相反方向传播,反映了组成SPP之间的负耦合。相比之下,对于同相照明,入射光束被分成两个高度准直并显示出低传播损耗的集体SPP。此外,与单个石墨烯片相比,单个SPP之间的耦合导致SPP的模态波长减小。

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