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Tunable large resonant absorption in a midinfrared graphene Salisbury screen

机译:在中红外石墨烯Salisbury屏幕中可调谐的大共振吸收

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摘要

The optical absorption properties of periodically patterned graphene plasmonic resonators are studied experimentally as the graphene sheet is placed near a metallic reflector. By varying the size and carrier density of the graphene, the parameters for achieving a surface impedance closely matched to free-space (Z_0 = 377Ω) are determined and shown to result in 24.5% total optical absorption in the graphene sheet. Theoretical analysis shows that complete absorption is achievable with higher doping or lower loss. This geometry, known as a Salisbury screen, provides an efficient means of light coupling to the highly confined graphene plasmonic modes for future optoelectronic applications.
机译:当石墨烯片放置在金属反射器附近时,通过实验研究了周期性图案化的石墨烯等离子体共振器的光吸收特性。通过改变石墨烯的尺寸和载流子密度,可以确定实现与自由空间(Z_0 =377Ω)紧密匹配的表面阻抗的参数,这些参数显示出在石墨烯片中的总吸光率为24.5%。理论分析表明,较高的掺杂或较低的损耗可以实现完全吸收。这种几何形状被称为Salisbury屏幕,为将来的光电应用提供了一种高效耦合光的方法,该方法将光耦合到高度受限的石墨烯等离子体模式。

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