Fu Yangyang, Xu Yadong, Chen Huanyang
Opt Express. 2016 Jan 25;24(2):1648-57. doi: 10.1364/OE.24.001648.
Inspired by the concept of parity-time symmetry, we propose a new waveguide system consisting of zero index metamaterials with an air gap. Based on analytical calculations and numerical simulations, we demonstrate that there are two exceptional points in such a system, which can induce unidirectional transparency. However, the introduced air gap could effectively manipulate the property of the waveguide system with PT symmetry. In particular, coherent perfect absorber-laser modes could be excited in PT broken phase, if a specific phase difference in the air gap is obtained. More interestingly, when Fabry-Pérot resonances take place in the air gap, the PT symmetry property will be suppressed, i.e., the value of loss/gain could not affect transmission and reflection of the waveguide. As a result, perfect bidirectional transmission without reflection can occur in the waveguide system.
受宇称-时间对称概念的启发,我们提出了一种由带有气隙的零折射率超材料组成的新型波导系统。基于解析计算和数值模拟,我们证明了在这样一个系统中存在两个例外点,它们可以诱导单向透明性。然而,引入的气隙可以有效地操控具有宇称-时间对称性的波导系统的特性。特别地,如果在气隙中获得特定的相位差,在宇称-时间对称性破缺相中可以激发相干完美吸收体-激光模式。更有趣的是,当气隙中发生法布里-珀罗共振时,宇称-时间对称性特性将受到抑制,即损耗/增益值不会影响波导的传输和反射。结果,在波导系统中可以实现无反射的完美双向传输。