Huang Yin, Shen Yuecheng, Min Changjun, Veronis Georgios
Opt Express. 2017 Oct 30;25(22):27283-27297. doi: 10.1364/OE.25.027283.
We introduce a non-parity-time-symmetric three-layer structure, consisting of a gain medium layer sandwiched between two phase-change medium layers for switching of the direction of reflectionless light propagation. We show that for this structure unidirectional reflectionlessness in the forward direction can be switched to unidirectional reflectionlessness in the backward direction at the optical communication wavelength by switching the phase-change material GeSbTe (GST) from its amorphous to its crystalline phase. We also show that it is the existence of exceptional points for this structure with GST in both its amorphous and crystalline phases which leads to unidirectional reflectionless propagation in the forward direction for GST in its amorphous phase, and in the backward direction for GST in its crystalline phase. Our results could be potentially important for developing a new generation of compact active free-space optical devices.
我们介绍了一种非宇称时间对称的三层结构,它由夹在两个相变介质层之间的增益介质层组成,用于切换无反射光传播的方向。我们表明,对于这种结构,通过将相变材料锗锑碲(GST)从非晶相切换到晶相,在光通信波长下,正向的单向无反射可以切换为反向的单向无反射。我们还表明,正是这种结构在GST处于非晶相和晶相时都存在例外点,导致GST处于非晶相时正向的单向无反射传播,以及GST处于晶相时反向的单向无反射传播。我们的结果对于开发新一代紧凑型有源自由空间光学器件可能具有潜在的重要意义。