Ma Hui Feng, Wang Gui Zhen, Jiang Wei Xiang, Cui Tie Jun
State Key Laboratory of Millimeter Waves, School of Information Science and Engineering, Southeast University, Nanjing 210096, China.
Sci Rep. 2014 Sep 18;4:6337. doi: 10.1038/srep06337.
We propose a kind of anisotropic gradient-index (GRIN) metamaterials, which can be used to control differently-polarized waves independently. We show that two three- dimensional (3D) planar lenses made of such anisotropic GRIN metamaterials are able to make arbitrary beam deflections for the vertical (or horizontal) polarization but have no response to the horizontal (or vertical) polarization. Then the vertically- and horizontally-polarized waves are separated and controlled independently to deflect to arbitrarily different directions by designing the anisotropic GRIN planar lenses. We make experimental verifications of the lenses using such a special metamaterial, which has both electric and magnetic responses simultaneously to reach approximately equal permittivity and permeability. Hence excellent impedance matching is obtained between the GRIN planar lenses and the air. The measurement results demonstrate good performance on the independent controls of differently-polarized waves, as observed in the numerical simulations.
我们提出了一种各向异性梯度折射率(GRIN)超材料,它可用于独立控制不同偏振的波。我们表明,由这种各向异性GRIN超材料制成的两个三维(3D)平面透镜能够对垂直(或水平)偏振进行任意光束偏转,但对水平(或垂直)偏振无响应。然后,通过设计各向异性GRIN平面透镜,垂直和水平偏振波被分离并独立控制,以偏转到任意不同的方向。我们使用这种特殊的超材料对透镜进行了实验验证,该超材料同时具有电响应和磁响应,以达到近似相等的介电常数和磁导率。因此,在GRIN平面透镜和空气之间获得了出色的阻抗匹配。测量结果表明,如数值模拟中所观察到的,在不同偏振波的独立控制方面具有良好的性能。