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Backaction in metasurface etalons

机译:后表面标准具中的反作用

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摘要

We consider the response of etalons created by a combination of a conventional mirror and a metasurface composed of a periodic lattice of metal scatterers with a resonant response. This geometry has been used previously for hybridization of localized plasmons with Fabry-Perot resonances and for perfect absorption, in so-called Salisbury screens. The particular aspect we address is if one can assume an environment-independent reflectivity for the metasurface when calculating the reflectivity of the composite system, as in a standard Fabry-Perot analysis, or whether the fact that the metasurface interacts with its own mirror image renormalizes its response. Using lattice sum theory, we take into account all possible retarded dipole-dipole interactions of scatterers in the metasurface amongst each other and through the mirror. We show that while a layer-by-layer Fabry-Perot formalism captures the main qualitative features of metasurface etalons, in fact the mirror modifies both the polarizability and reflectivity of the metasurface in a fashion that is akin to Drexhage's modification of the radiative properties of a single dipole.
机译:我们考虑由常规反射镜和由金属散射体的周期性晶格组成的超表面的组合产生的标准具的响应,并产生谐振响应。这种几何结构以前曾用于所谓的Salisbury筛选中,使局部等离激元与Fabry-Perot共振杂交并实现完美吸收。我们要解决的特定方面是,如在标准Fabry-Perot分析中那样,在计算复合系统的反射率时是否可以假定超表面的环境独立于反射率,或者超表面与其自身镜像相互作用的事实是否重新归一化它的回应。使用晶格和理论,我们考虑了彼此之间以及通过反射镜的超颖表面中散射体的所有可能的延迟偶极-偶极相互作用。我们表明,虽然逐层的Fabry-Perot形式主义捕捉了超表面等温面的主要定性特征,但实际上,镜子以类似于Drexhage修改后表面的辐射性的方式修改了超表面的极化率和反射率。一个偶极子。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2016年第10期|104301.1-104301.10|共10页
  • 作者单位

    Center for Nanophotonics, FOM Institute AMOLF, Science Park 102, 1098XG Amsterdam, The Netherlands;

    Center for Nanophotonics, FOM Institute AMOLF, Science Park 102, 1098XG Amsterdam, The Netherlands;

    Center for Nanophotonics, FOM Institute AMOLF, Science Park 102, 1098XG Amsterdam, The Netherlands;

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