论文标题
从pt相图中损坏的增益增益和无损失的PT对称性
Gain-gain and gain-lossless PT-symmetry broken from PT-phase diagram
论文作者
论文摘要
在微/纳米光子结构中,对对称性的对称性(PT)对称性(PT)对称性进行了广泛研究,因为它们带来了基于非炎性光学元件来控制光流的新机会。先前的研究集中在损失或减肥耦合系统中破裂的PT对称性的情况。在这里,我们从理论上预测了从相图中预测获得的增益和无益PT破裂,其中PT对称性和PT破裂之间的边界可以在全参数空间中清楚地定义,包括增益,无损和损失。对于特定的微/纳米光子结构,例如耦合的波导,我们给出了每个相空间的透射矩阵,可用于光束分裂。以耦合的波导为例,我们在PT对称相中获得定期的能量交换,并且在Pt-Broken相中与相位图一致的PT-BROOKEN相中的指数增益或损失。赋予PT对称性或破碎的情况,这种情况不仅会加深对基本物理学的理解,而且还将促进光电路由器和光束分离器等光子应用的突破。
Parity-time (PT) symmetry and broken in micro/nano photonic structures have been investigated extensively as they bring new opportunities to control the flow of light based on non-Hermitian optics. Previous studies have focused on the situations of PT-symmetry broken in loss-loss or gain-loss coupling systems. Here, we theoretically predict the gain-gain and gain-lossless PT-broken from phase diagram, where the boundaries between PT-symmetry and PT-broken can be clearly defined in the full-parameter space including gain, lossless and loss. For specific micro/nano photonic structures, such as coupled waveguides, we give the transmission matrices of each phase space, which can be used for beam splitting. Taking coupled waveguides as an example, we obtain periodic energy exchange in PT-symmetry phase and exponential gain or loss in PT-broken phase, which are consistent with the phase diagram. The scenario giving a full view of PT-symmetry or broken, will not only deepen the understanding of fundamental physics, but also will promote the breakthrough of photonic applications like optical routers and beam splitters.