论文标题
广角多通道巨型扩散器
Broad-Angle Multichannel Metagrating Diffusers
论文作者
论文摘要
我们提出了一个半分析方案,用于设计宽角度多通道元(MG),嵌入多层打印电路板配置中的较稀疏的负载导电条(元原子)的稀疏定期布置(元原子)。通过明智地选择周期性和入射角,可以通过多端口网络来描述这种毫克,在该网络中,输入和输出端口对应于不同的照明和与相同的繁殖Floquet floquet floquet-bloch模式相关的不同照明和反射方向。由于可以通过分析对这些可能的散射方案进行建模,因此可以方便地应用在模态反射系数(散射矩阵条目)上,以产生扩散响应,并在解决后产生所需的MG几何形状。我们表明,通过要求对称MG配置,可以大大减少独立S参数的数量,从而使用单个稀疏MG对多个此类约束满意。没有任何全波优化的,此过程就会导致多通道MG的制造布局,从而从许多发射率的角度同时从众多的入射角度抑制反射抑制和扩散散射。通过五通道原型对实验进行了实验验证的概念,为单恒定和Bistatic雷达横截面减少提供了创新的解决方案,避免了与用于此目的使用的密集的跨空面相关的设计和实施挑战。
We present a semianalytical scheme for the design of broad-angle multichannel metagratings (MG), sparse periodic arrangements of loaded conducting strips (meta-atoms), embedded in a multilayer printed circuit board configuration. By judicious choice of periodicity and angles of incidence, scattering off such a MG can be described via a multi-port network, where the input and output ports correspond to different illumination and reflection directions associated with the same set of propagating Floquet-Bloch modes. Since each of these possible scattering scenarios can be modelled analytically, constraints can be conveniently applied on the modal reflection coefficients (scattering matrix entries) to yield a diffusive response, which, when resolved, produce the required MG geometry. We show that by demanding a symmetric MG configuration, the number of independent S parameters can be dramatically reduced, enabling satisfaction of multiple such constraints using a single sparse MG. Without any full-wave optimization, this procedure results in a fabrication-ready layout of a multichannel MG, enabling retroreflection suppression and diffusive scattering from numerous angles of incidence simultaneously. This concept, verified experimentally via a five-channel prototype, offers an innovative solution to both monostatic and bistatic radar cross section reduction, avoiding design and implementation challenges associated with dense metasurfaces used for this purpose.