Yi Jianjia, Piau Gérard-Pascal, de Lustrac André, Burokur Shah Nawaz
State Key Laboratory of Integrated Services Networks, Xidian University, 710071 Xi'an, Shaanxi, China.
Centre de Nanosciences et de Nanotechnologies, CNRS, Univ Paris Sud, Université Paris-Saclay, C2N-Orsay, 91405 Orsay cedex, France.
Sci Rep. 2016 Jul 28;6:30661. doi: 10.1038/srep30661.
The concept of transformation optics (TO) is applied to control the flow of electromagnetic fields between two sections of different dimensions through a tapering device. The broadband performance of the field taper is numerically and experimentally validated. The taper device presents a graded permittivity profile and is fabricated through three-dimensional (3D) polyjet printing technology using low-cost all-dielectric materials. Calculated and measured near-field mappings are presented in order to validate the proposed taper. A good qualitative agreement is obtained between full-wave simulations and experimental tests. Such all-dielectric taper paves the way to novel types of microwave devices that can be easily fabricated through low-cost additive manufacturing processes.
变换光学(TO)的概念被应用于通过一个渐变装置来控制不同尺寸的两个区域之间的电磁场流动。该场渐变的宽带性能通过数值模拟和实验得到了验证。渐变装置呈现出渐变的介电常数分布,并通过三维(3D)聚喷射打印技术使用低成本的全介质材料制造而成。给出了计算和测量的近场映射,以验证所提出的渐变。全波模拟和实验测试之间获得了良好的定性一致性。这种全介质渐变装置为新型微波器件的发展铺平了道路,这些器件可以通过低成本的增材制造工艺轻松制造出来。