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Perfect non-specular reflection with polarization control by using a locally passive metasurface sheet on a grounded dielectric slab

机译:通过在接地电介质板上使用局部无源的元表面片材完美的非镜面反射

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摘要

This paper investigates the conditions for a perfect anomalous reflection through a modulated metasurface consisting of a metallic cladding printed over a grounded slab. Differently to what has been previously published, the problem is rigorously addressed by modeling the metallic cladding through an equivalent penetrable impedance and accounting for the grounded slab through the problem's Green's function. It is shown that without polarization transformation, the exact solution exists only for the special case of retroreflection, and, in that case, it can be done simultaneously for the two orthogonal polarizations, with an arbitrary phase shift among the two. On the other hand, changing the polarization of the reflected wave allows one to find an exact solution for arbitrary combinations of incidence and reflection angles. The exact solution is found by imposing that the induced currents radiating with the Green's function of the background problem simultaneously create the desired reflected beam and cancel the specular reflection from the grounded slab. This approach leads to the derivation of a closed-form expression for the homogenized penetrable impedance profile providing perfect anomalous reflection, i.e., ensuring the vanishing of all the coefficients of the waves associated with unwanted diffraction orders, including the specular reflected wave and the evanescent waves. This result is of great practical interest, since the derived penetrable impedance profile can be readily implemented through a simple distribution of metallic patches. The feasibility of this approach is verified through full wave simulations of both the ideal impedance and the patch-based structure, which confirm the effectiveness of the proposed solution.
机译:本文研究了通过由印刷在接地板上印刷的金属包层组成的调制元质°来对完美异常反射的条件。不同于先前已发布的内容,通过通过当量通过问题的绿色函数对接地板块进行接地板来建立金属包层来严格地解决问题。结果表明,在没有偏振变换的情况下,确切的解决方案仅存在于逆流的特殊情况,并且在这种情况下,可以同时为两个正交偏振,两者之间的任意相位偏移。另一方面,改变反射波的偏振允许人们找到用于任意的入射角和反射角的精确解决方案。通过强加辐射与背景问题的绿色功能的感应电流同时产生所需的反射光束并取消从接地板坯的镜面反射射出所需的电流。该方法导致均匀化可渗透阻抗轮廓的闭合形式表达的推导,提供完美的异常反射,即,确保与不需要的衍射令相关的波的所有系数消失,包括镜面反射波和渐逝波。该结果具有很强的实际兴趣,因为通过衍生的可渗透阻抗曲线可以通过简单的金属贴片分布容易地实现。通过理想阻抗和基于贴片结构的全波模拟来验证这种方法的可行性,这证实了所提出的解决方案的有效性。

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  • 来源
    《Applied Physics Letters》 |2021年第23期|231601.1-231601.6|共6页
  • 作者单位

    Applied Electromagnetics Laboratory Department of Information Engineering and Mathematics University of Siena 53100 Siena Italy;

    Applied Electromagnetics Laboratory Department of Information Engineering and Mathematics University of Siena 53100 Siena Italy;

    Applied Electromagnetics Laboratory Department of Information Engineering and Mathematics University of Siena 53100 Siena Italy;

    Applied Electromagnetics Laboratory Department of Information Engineering and Mathematics University of Siena 53100 Siena Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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