Shalaev Vladimir M, Cai Wenshan, Chettiar Uday K, Yuan Hsiao-Kuan, Sarychev Andrey K, Drachev Vladimir P, Kildishev Alexander V
School of Electrical and Computer Engineering, Purdue University, West Lafayette, Indiana 47907, USA.
Opt Lett. 2005 Dec 15;30(24):3356-8. doi: 10.1364/ol.30.003356.
A double-periodic array of pairs of parallel gold nanorods is shown to have a negative refractive index in the optical range. Such behavior results from the plasmon resonance in the pairs of nanorods for both the electric and the magnetic components of light. The refractive index is retrieved from direct phase and amplitude measurements for transmission and reflection, which are all in excellent agreement with simulations. Both experiments and simulations demonstrate that a negative refractive index n' approximately -0.3 is achieved at the optical communication wavelength of 1.5 microm using the array of nanorods. The retrieved refractive index critically depends on the phase of the transmitted wave, which emphasizes the importance of phase measurements in finding n'.
一对平行金纳米棒的双周期阵列在光学范围内显示出负折射率。这种现象源于纳米棒对中光的电和磁分量的等离子体共振。通过对透射和反射的直接相位和幅度测量来获取折射率,这些测量结果与模拟结果高度吻合。实验和模拟均表明,使用纳米棒阵列在1.5微米的光通信波长处可实现约为 -0.3的负折射率n'。所获取的折射率严重依赖于透射波的相位,这突出了相位测量在确定n'中的重要性。