Zhao Xiaolei, Zhu Lin, Yuan Cai, Yao Jianquan
Opt Express. 2016 Aug 8;24(16):18244-51. doi: 10.1364/OE.24.018244.
We propose an optically controlled reconfigurable hybrid metamaterial waveguide system at terahertz frequencies, which consists of a two dimensional gold cut wire array deposited on top of a dielectric slab waveguide. Numerical findings reveal that this device is able to realize dynamic transformation from double electromagnetically induced transparency like material to ultra-narrow band guided mode resonance (GMR) filter by controlling the optically excited free carriers in gallium arsenide pads inserted between the gold cut wires. During this reconfiguration process of resonance modes, high quality factors up to ~104 and ~118 for the two EIT-like peaks and up to ~578 for the GMR filter are obtained.
我们提出了一种太赫兹频率下的光控可重构混合超材料波导系统,该系统由沉积在介质平板波导顶部的二维金切割线阵列组成。数值结果表明,通过控制插入在金切割线之间的砷化镓焊盘中光激发的自由载流子,该器件能够实现从类似双电磁诱导透明材料到超窄带导模共振(GMR)滤波器的动态转变。在这种共振模式的重构过程中,两个类似电磁诱导透明峰的品质因数高达104和118,而GMR滤波器的品质因数高达~578。