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Floquet Chern insulators of light

机译:Floquet Chern光绝缘子

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摘要

Achieving topologically-protected robust transport in optical systems has recently been of great interest. Most studied topological photonic structures can be understood by solving the eigenvalue problem of Maxwell’s equations for static linear systems. Here, we extend topological phases into dynamically driven systems and achieve a Floquet Chern insulator of light in nonlinear photonic crystals (PhCs). Specifically, we start by presenting the Floquet eigenvalue problem in driven two-dimensional PhCs. We then define topological invariant associated with Floquet bands, and show that topological band gaps with non-zero Chern number can be opened by breaking time-reversal symmetry through the driving field. Finally, we numerically demonstrate the existence of chiral edge states at the interfaces between a Floquet Chern insulator and normal insulators, where the transport is non-reciprocal and uni-directional. Our work paves the way to further exploring topological phases in driven optical systems and their optoelectronic applications.
机译:在光学系统中实现拓扑保护的鲁棒传输最近引起了极大的兴趣。可以通过解决静态线性系统的麦克斯韦方程组的特征值问题来了解研究最多的拓扑光子结构。在这里,我们将拓扑阶段扩展到动态驱动的系统中,并在非线性光子晶体(PhC)中实现了Floquet Chern光的绝缘体。具体来说,我们首先介绍驱动二维PhC中的Floquet特征值问题。然后,我们定义与Floquet带相关的拓扑不变量,并表明可以通过打破驱动场中的时间反转对称性来打开具有非零Chern数的拓扑带隙。最后,我们用数值方法证明了在Floquet Chern绝缘子和普通绝缘子之间的界面处存在手征性边缘态,其中传输是不可逆的且是单向的。我们的工作为进一步探索驱动光学系统及其光电应用中的拓扑阶段铺平了道路。

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