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Enhanced interaction of Tamm plasmon polaritons based on graphene/DBR/silver structure

机译:基于石墨烯/ DBR /银结构的TAMM等离子极性官的相互作用

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In this work, we theoretically investigate the strong coupling of Tamm Plasmon Polaritons (TPP) in a graphene/DBR/Ag hybrid structure. It is found that TPP can be generated at both upper graphene and lower Ag interfaces, which can strongly couple with each other, allowing strong light-matter interaction with dual-band perfect absorption. Numerical results reveal that resonance frequency of hybrid modes can be tuned by adjusting geometry parameters or dynamically modifying graphene Fermi energy. Coupling strength for the TPP hybrid modes exhibits a large tuning range, from large Rabi splitting to a very narrow induced transparency. The tunable TPP strong coupling with a dual-band perfect absorption in this simple layered system is potential in developing a broad range of graphene-based optoelectronic devices.
机译:在这项工作中,我们理论上地研究了TAMP等离子体Polariton(TPP)在石墨烯/ DBR / Ag混合结构中的强耦合。发现可以在上石墨烯和下部Ag界面处产生TPP,这可以彼此强烈耦合,允许具有强烈的光质相互作用与双频带的完美吸收。数值结果表明,可以通过调节几何参数或动态修改石墨烯费米能量来调谐混合模式的共振频率。 TPP混合模式的耦合强度表现出大的调谐范围,从大型rabi分裂到非常窄的透明度。在该简单的分层系统中具有双带完美吸收的可调谐TPP强耦合是开发广泛的基于石墨烯的光电器件的可能性。

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