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Passive Lossless Huygens Metasurfaces for Conversion of Arbitrary Source Field to Directive Radiation

机译:用于将任意源场转换为定向辐射的被动无损惠更斯超表面

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We present a semianalytical formulation of the interaction between a given source field and a scalar Huygens metasurface (HMS), a recently introduced promising concept for wavefront manipulation based on a sheet of orthogonal electric and magnetic dipoles. Utilizing the equivalent surface impedance representation of these metasurfaces, we establish that an arbitrary source field can be converted into directive radiation via a passive lossless HMS if two physical conditions are met: 1) local power conservation and 2) local impedance equalization. Expressing the fields via their plane-wave spectrum and harnessing the slowly-varying envelope approximation, we obtain semianalytical formulae for the scattered fields, and prescribe the surface reactance required for the metasurface implementation. The resulting design procedure indicates that the local impedance equalization induces a Fresnel-like reflection, while local power conservation forms a radiating virtual aperture which follows the total excitation field magnitude. The semianalytical predictions are verified by finite-element simulations of HMSs designed for different source configurations. Besides serving as a flexible design procedure for HMS radiators, the proposed formulation also provides a robust mechanism to incorporate a variety of source configurations into general HMS models, as well as physical insight on the conditions enabling purely reactive implementation of this novel type of metasurfaces.
机译:我们提出了一个给定的源场和标量惠更斯超表面(HMS)之间的相互作用的半解析公式,这是最近引入的基于片状正交电和磁偶极子的波前操纵概念。利用这些超表面的等效表面阻抗表示,我们确定,如果满足以下两个物理条件,则可以通过无源无损HMS将任意源场转换为定向辐射:1)本地节电和2)本地阻抗均衡。通过其平面波谱表示场并利用缓慢变化的包络近似,我们获得了散射场的半解析公式,并规定了超表面实现所需的表面电抗。最终的设计过程表明,局部阻抗均衡会引起菲涅耳样的反射,而局部功率守恒会形成一个辐射虚孔径,该虚孔径遵循总激励场的大小。通过为不同源配置设计的HMS的有限元模拟,可以验证半分析预测。除了充当HMS散热器的灵活设计程序外,拟议的公式还提供了一种强大的机制,可以将各种源配置纳入常规HMS模型中,并且可以对条件进行物理洞察,以实现这种新型超颖表面的纯粹反应性实施。

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