论文标题
用洛伦兹受限的辐射器优化对元表孔的极化分布
Optimizing Polarizability Distributions for Metasurface Apertures with Lorentzian-Constrained Radiators
论文作者
论文摘要
我们提出了一种设计策略,用于选择形成所需辐射模式所需的跨表面孔的有效极化分布。跨表孔由一系列亚波长元素组成,每个元件都可以概念化为辐射的,可极化的偶极子。理想的极化分布可以通过使用全息方法首先获得必要的光圈场确定,然后使用等价原理将其转换为极化分布。为了实现这种理想分布,每个元素的极化性都需要具有无约束的幅度和相位。但是,对于一个被动的,超材料的谐振器,有效极化性的大小和相通过Lorentzian共振的性质密不可分地联系在一起,相值的一系列范围仅限于最多180度的跨度。在这里,我们介绍了一个从理想到可用的极化分布的映射家族,通过绘制复杂平面中的两个极化能力,很容易地可视化。尽管存在固有的谐振器限制,但使用这些映射之一可以从元表面天线实现高度优化的光束图案。我们介绍了映射技术并提供了几个特定示例,并使用用于确认设计方法的数值模拟。
We present a design strategy for selecting the effective polarizability distribution for a metasurface aperture needed to form a desired radiation pattern. A metasurface aperture consists of an array of subwavelength metamaterial elements, each of which can be conceptualized as a radiating, polarizable dipole. An ideal polarizability distribution can be determined by using a holographic approach to first obtain the necessary aperture fields, which can then be converted to a polarizability distribution using equivalence principles. To achieve this ideal distribution, the polarizability of each element would need to have unconstrained magnitude and phase; however, for a single, passive, metamaterial resonator the magnitude and phase of the effective polarizability are inextricably linked through the properties of the Lorentzian resonance, with the range of phase values restricted to a span of at most 180 degrees. Here, we introduce a family of mappings from the ideal to the available polarizability distributions, easily visualized by plotting both polarizabilities in the complex plane. Using one of these mappings it is possible to achieve highly optimized beam patterns from a metasurface antenna, despite the inherent resonator limitations. We introduce the mapping technique and provide several specific examples, with numerical simulations used to confirm the design approach.