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3D field-shaping lens using all-dielectric gradient refractive index materials

机译:使用全介电梯度折射率材料的3D场成形透镜

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摘要

A novel three-dimensional (3D) optical lens structure for electromagnetic field shaping based on spatial light transformation method is proposed at microwave frequencies. The lens is capable of transforming cylindrical wavefronts into planar ones, and generating a directive emission. Such manipulation is simulated and analysed by solving Laplace’s equation, and the deformation of the medium during the transformation is theoretically described in detail. The two-dimensional (2D) design method producing quasi-isotropic parameters is further extended to a potential 3D realization with all-dielectric gradient refractive index metamaterials. Numerical full-wave simulations are performed on both 2D and 3D models to verify the functionality and broadband characteristics of the calculated lens. Far-field radiation patterns and near-field distributions demonstrate a highly radiated directive beam when the lens is applied to a conical horn antenna.
机译:提出了一种基于空间光变换方法的电磁场整形的新型三维(3D)光学透镜结构,该结构在微波频率下有效。该透镜能够将圆柱波前转换为平面波前,并产生定向发射。通过求解拉普拉斯方程来模拟和分析这种操纵,并在理论上详细描述了转换过程中介质的变形。产生准各向同性参数的二维(2D)设计方法进一步扩展为使用全介电梯度折射率超材料实现的潜在3D实现。在2D和3D模型上均进行了全波数值模拟,以验证计算出的镜头的功能和宽带特性。当将透镜应用于圆锥形喇叭天线时,远场辐射图和近场分布显示出高辐射的定向波束。

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