Turpin Jeremiah P, Massoud Ayah T, Jiang Zhi Hao, Werner Pingjuan L, Werner Douglas H
Department of Electrical Engineering Pennsylvania State University, University Park, PA 16802, USA.
Opt Express. 2010 Jan 4;18(1):244-52. doi: 10.1364/OE.18.000244.
The transformation optics technique for designing novel electromagnetic and optical devices offers great control over wave behavior, but is difficult to implement primarily due to limitations in current metamaterial design and fabrication techniques. This paper demonstrates that restricting the spatial transformation to a conformal mapping can lead to much simpler material parameters for more practical implementation. As an example, a flat cylindrical-to-plane-wave conversion lens is presented and its performance validated through numerical simulations. It is shown that the lens dimensions and embedded source location can be adjusted to produce one, two, or four highly directive planar beams. Two metamaterial designs for this lens that implement the required effective medium parameters are proposed and their behavior analyzed.
用于设计新型电磁和光学器件的变换光学技术能对波的行为进行很好的控制,但主要由于当前超材料设计和制造技术的限制而难以实现。本文表明,将空间变换限制为共形映射可导致更简单的材料参数,以便更实际地实现。作为一个例子,提出了一种平面圆柱到平面波转换透镜,并通过数值模拟验证了其性能。结果表明,可以调整透镜尺寸和嵌入源位置以产生一个、两个或四个高指向性平面波束。针对该透镜提出了两种实现所需有效介质参数的超材料设计,并分析了它们的行为。