首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Molding the flow of light with a magnetic field: plasmonic cloaking and directional scattering
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Molding the flow of light with a magnetic field: plasmonic cloaking and directional scattering

机译:用磁场塑造光流:等离子隐身和定向散射

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摘要

We investigate electromagnetic (EM) scattering and plasmonic cloaking in a system composed of a dielectric cylinder coated with a magneto-optical shell. In the long-wavelength limit we demonstrate that the application of an external magnetic field can not only switch on and off the cloaking mechanism but also mitigate losses, as the absorption cross section is shown to drop sharply precisely at the cloaking operation frequency band. We also show that the angular distribution of the scattered radiation can be effectively controlled by applying an external magnetic field, allowing for a swift change in the scattering pattern. By demonstrating that these results are feasible with realistic, existing magneto-optical materials, such as graphene epitaxially grown on SiC, we suggest that magnetic fields could be used as effective, versatile external agents to tune plasmonic cloaks and to dynamically control EM scattering in an unprecedented way. We hope that these results may find use in disruptive photonic technologies.
机译:我们研究电磁(EM)散射和等离子体掩盖在由涂有磁光壳的介电圆柱体组成的系统中。在长波长范围内,我们证明了外部磁场的施加不仅可以打开和关闭隐身机制,而且还可以减轻损耗,因为显示出吸收截面在隐身操作频段上会急剧下降。我们还表明,通过施加外部磁场可以有效控制散射辐射的角度分布,从而使散射模式发生快速变化。通过证明这些结果对于现实的,现有的磁光材料(例如在SiC上外延生长的石墨烯)是可行的,我们建议磁场可以用作有效的,通用的外部试剂,以调节等离激元披风并动态控制EM散射。前所未有的方式。我们希望这些结果可以在破坏性光子技术中找到应用。

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