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Wideband Oblique-Incident Spherical-Plane Wave Conversion Metalens in K-band

机译:宽带倾斜 - 入射球形 - 平面波转换金属k波段

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摘要

In this paper, a wideband spherical-plane wave conversion metalens (WSPCM) working in the K-band is designed. The WSPCM consists of metamaterial elements with gradient transmission phases, which can transform the oblique-incident spherical wave to the plane wave propagating along the direction from the source to the center of the metalens. Firstly, a five-layer metamaterial element with gradient transmission phase is designed using the Computer Simulation Technology (CST) software. Then, a metamaterial wedge consists of eight metamaterial elements with 30 degree phase gradient (that can deflect the incident plane wave by 30 degree) is designed to verify the phase modulation characteristic of the metamaterial element. Afterwards, a metalens is designed according to the digitized phase distribution of the dielectric lens. Finally, the electric field distribution of the emitted wave at different frequencies and different source locations (i.e., oblique-incident angles) are studied. The design is validated through simulations and measurements.
机译:在本文中,设计了在K波段中工作的宽带球形面波转换金属(WSPCM)。 WSPCM由具有梯度传输相的超材料元素组成,其可以将倾斜 - 入射球面波沿着从源的方向传播到金属元的中心。首先,使用计算机仿真技术(CST)软件设计具有梯度传输阶段的五层超材料元素。然后,超材料楔子由八个超材料元素组成,具有30度相位梯度(可以将入射平面波偏转30度),旨在验证超材料元素的相位调制特性。之后,根据介电透镜的数字化相分布设计了金属。最后,研究了不同频率和不同源位置(即,倾斜入射角)的发射波的电场分布。设计通过仿真和测量验证。

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