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Arbitrary beam control using passive lossless metasurfaces enabled by orthogonally polarized custom surface waves

机译:使用无源无形超表面的任意光束控制,该超无形超表面由正交极化的定制表面波实现

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摘要

For passive, lossless impenetrable metasurfaces, a design technique for arbitrary beam control of receiving, guiding, and launching is presented. Arbitrary control is enabled by a custom surface wave in an orthogonal polarization such that its addition to the incident (input) and the desired scattered (output) fields is supported by a reactive surface impedance everywhere on the reflecting surface. Such a custom surface wave (SW) takes the form of an evanescent wave propagating along the surface with a spatially varying envelope. A growing SW appears when an illuminating beam is received. The SW amplitude stays constant when power is guided along the surface. The amplitude diminishes as a propagating wave (PW) is launched from the surface as a leaky wave. The resulting reactive tensor impedance profile may be realized as an array of anisotropic metallic resonators printed on a grounded dielectric substrate. Illustrative design examples of a Gaussian beam translator-reflector, a probe-fed beam launcher, and a near-field focusing lens are provided.
机译:对于被动,无损不可穿透的超表面,提出了一种用于接收,引导和发射的任意波束控制的设计技术。任意控制都可以通过正交偏振的自定义表面波来实现,从而使它在入射(输入)场和所需的散射(输出)场中的叠加得到反射表面上各处的电抗性表面阻抗的支持。这种自定义表面波(SW)采取an逝波的形式,该消逝波沿表面传播,并具有空间变化的包络。接收到照明光束时,SW会增大。沿表面引导功率时,SW振幅保持恒定。当传播波(PW)作为泄漏波从表面发射时,振幅减小。所得的电抗张量阻抗分布可以实现为印刷在接地的电介质基板上的各向异性金属谐振器的阵列。提供了高斯光束平移-反射器,探测式光束发射器和近场聚焦透镜的说明性设计示例。

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  • 来源
    《Physical review. B, Condensed Matter And Materials Physics》 |2018年第3期|035439.1-035439.11|共11页
  • 作者单位

    Department of Electrical and Computer Engineering, University of Massachusetts Amherst, Amherst, Massachusetts 01003, USA;

    Department of Electronics and Nanoengineering, Aalto University, P.O. Box 15500, 00076 Aalto, Finland;

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