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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Phase Transition in $mathcal {PT}$ Symmetric Active Plasmonic Systems
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Phase Transition in $mathcal {PT}$ Symmetric Active Plasmonic Systems

机译:对称有源等离子体系统在 $ mathcal {PT} $ 中的相变

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Surface plasmon polaritons (SPPs) are coherent electromagnetic surface waves trapped on an insulator–conductor interface. The SPPs decay exponentially along the propagation due to conductor losses, restricting the SPPs propagation length to few microns. Gain materials can be used to counterbalance the aforementioned losses. We provide an exact expression for the gain, in terms of the optical properties of the interface, for which the losses are eliminated. In addition, we show that systems characterized by lossless SPP propagation are related to symmetric systems. Furthermore, we derive an analytical critical value of the gain describing a phase transition between lossless and prohibited SPPs propagation. The regime of the aforementioned propagation can be directed by the optical properties of the system under scrutiny. Finally, we perform COMSOL simulations verifying the theoretical findings.
机译:表面等离子体激元极化子(SPPs)是捕获在绝缘体-导体界面上的相干电磁表面波。由于导体损耗,SPP沿传播方向呈指数衰减,从而将SPP的传播长度限制为几微米。增益材料可以用来抵消上述损耗。根据界面的光学特性,我们为增益提供了精确的表达式,为此可以消除损耗。此外,我们表明以无损SPP传播为特征的系统与对称系统有关。此外,我们推导了增益的分析临界值,该临界值描述了无损和禁止的SPP传播之间的相变。前述传播的方式可以由系统的光学特性来指导。最后,我们进行COMSOL仿真以验证理论结果。

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