论文标题

分支切割的横断:非热质face中通用2π相粘贴的拓扑起源

Crossing of the branch cut: the topological origin of a universal 2π-phase retardation in non-Hermitian metasurfaces

论文作者

Colom, Rémi, Mikheeva, Elena, Achouri, Karim, Zuniga-Perez, Jesus, Bonod, Nicolas, Martin, Olivier J. F., Burger, Sven, Genevet, Patrice

论文摘要

光子组件的全波前控制要求传入的光束上的空间相调制范围为0至2π。由于它们与环境的辐射耦合,所有光学组件都是本质上的非热系统,通常通过具有复杂本本频率的反射和传输矩阵来描述。在这里,我们表明,平均时间对称性破坏(显式或自发)将反射矩阵的零奇异性从真实轴移至复杂频率平面的上部。因此,每当不连续分支桥接一个零和极点(即两对奇异点)越过真实轴时,就会实现输出通道的通用0至2π相梯度作为实际频率激发的函数。这种基本的理解应用于界面的工程师电磁场,包括但不限于元信息。与非凡的拓扑特征相关的非拓扑特征或分支切换相关,在谐振光子系统的设计中起着令人惊讶的关键作用。

Full wavefront control by photonic components requires that the spatial phase modulation on an incoming optical beam ranges from 0 to 2π. Because of their radiative coupling to the environment, all optical components are intrinsically non-Hermitian systems, often described by reflection and transmission matrices with complex eigenfrequencies. Here, we show that Parity-Time symmetry breaking -- either explicit or spontaneous -- moves the position of Zero singularities of the reflection or transmission matrices from the real axis to the upper part of the complex frequency plane. A universal 0 to 2π-phase gradient of an output channel as a function of the real frequency excitation is thus realized whenever the discontinuity branch bridging a Zero and a Pole, i.e a pair of singularities, is crossing the real axis. This basic understanding is applied to engineer electromagnetic fields at interfaces, including, but not limited to, metasurfaces. Non-Hermitian topological features associated with exceptional degeneracies or branch cut crossing are shown to play a surprisingly pivotal role in the design of resonant photonic systems.

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