Taskhiri Mohammad Mahdi, Amirhosseini Mohammad Khalaj
J Opt Soc Am A Opt Image Sci Vis. 2017 Jul 1;34(7):1265-1271. doi: 10.1364/JOSAA.34.001265.
This paper presents a novel inhomogeneous hemispherical dielectric lens. The proposed lens is designed based on the ray inserting method (RIM). Applying this approach, a uniform distribution of the rays' end points over the lens plane aperture is achieved while lens matching to the environment refractive index is perfectly fulfilled. We can change the antenna features such as sidelobe level and gain by controlling the end point of each ray propagated through the hemispherical lens. The refractive index of the designed hemispherical inhomogeneous lens is derived and it is validated using COMSOL Multiphysics. The proposed lens is realized using material drilling and multilayer techniques. Analysis of the realized lens is performed using CST-Microwave Studio. The structure has been fabricated. The results of a simulation and experiment indicate good performances of realized planar lens in a wide frequency bandwidth. Comparing with other hemispherical lenses like classical half Maxwell fish-eye, the improvements in the gain, sidelobe levels, and input matching are achieved by using the RIM.
本文提出了一种新型非均匀半球形介质透镜。所提出的透镜是基于光线插入法(RIM)设计的。应用这种方法,在完美实现透镜与环境折射率匹配的同时,实现了光线端点在透镜平面孔径上的均匀分布。我们可以通过控制穿过半球形透镜传播的每条光线的端点来改变天线特性,如旁瓣电平增益。推导了所设计的半球形非均匀透镜的折射率,并使用COMSOL Multiphysics进行了验证。所提出的透镜是使用材料钻孔和多层技术实现的。使用CST - 微波工作室对实现的透镜进行了分析。该结构已制作完成。仿真和实验结果表明,所实现的平面透镜在很宽的频率带宽内具有良好的性能。与其他半球形透镜(如经典的半麦克斯韦鱼眼透镜)相比,通过使用光线插入法在增益、旁瓣电平以及输入匹配方面都有改进。