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Pairing Toroidal and Magnetic Dipole Resonances in Elliptic Dielectric Rod Metasurfaces for Reconfigurable Wavefront Manipulation in Reflection

机译:椭圆介电棒超表面中的环形和磁偶极子共振配对用于反射中的可重构波前操纵

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摘要

A novel approach for reconfigurable wavefront manipulation with gradient metasurfaces based on permittivity‐modulated elliptic dielectric rods is proposed. It is shown that the required 2π phase span in the local electromagnetic response of the metasurface can be achieved by pairing the lowest magnetic dipole Mie resonance with a toroidal dipole Mie resonance, instead of using the lowest two Mie resonances corresponding to fundamental electric and magnetic dipole resonances as customarily exercised. This approach allows for the precise matching of both the resonance frequencies and quality factors. Moreover, the accurate matching is preserved if the rod permittivity is varied, allowing for constructing reconfigurable gradient metasurfaces by locally modulating the permittivity in each rod. Highly efficient tunable beam steering and beam focusing with ultrashort focal lengths are numerically demonstrated, highlighting the advantage of the low‐profile metasurfaces over bulky conventional lenses. Notably, despite using a matched pair of Mie resonances, the presence of an electric polarizability background allows to perform the wavefront shaping operations in reflection, rather than transmission. This has the advantage that any control circuitry necessary in an experimental realization can be accommodated behind the metasurface without affecting the electromagnetic response.
机译:提出了一种基于介电常数调制的椭圆介电棒的梯度超表面可重构波前操纵新方法。结果表明,通过将最低磁偶极Mie谐振与环形偶极Mie谐振配对,而不是使用与基本电偶极和磁偶极子对应的最低两个Mie谐振,可以实现超颖表面的局部电磁响应中所需的2π相跨度惯常进行的共振。该方法允许谐振频率和品质因数两者的精确匹配。此外,如果改变杆的介电常数,则可以保持精确的匹配,从而可以通过局部调制每个杆的介电常数来构造可重构的梯度超曲面。数值显示了高效可调光束转向和超短焦距光束聚焦,突出了低轮廓超表面比笨重传统镜片的优势。值得注意的是,尽管使用了一对匹配的Mie共振,但电极化率背景的存在允许以反射而不是透射的方式执行波前整形操作。这具有的优点是,在实验实现中必需的任何控制电路都可以容纳在超表面之后,而不会影响电磁响应。

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