论文标题
集成波导晶格中拓扑状态的相干控制
Coherent control of topological states in an integrated waveguide lattice
论文作者
论文摘要
拓扑光子学有望增强系统的全球对称性实现光定位和传播的鲁棒性。尽管拓扑结构的传统设计依赖于晶格对称性,但基于意外退化的单个元原子模式,还有一种替代策略。使用这个概念,我们根据基于硅纳米波导的阵列在集成的光学纳米结构中实现拓扑边缘状态,每种都在电信波长处托管了一对堕落模式。利用波导模式与不同对称性的叠加形成的拓扑模式的杂种性质,我们通过调整退化模式之间的相位并证明散装或边缘状态的选择性激发,从而实现对拓扑边缘状态的连贯控制。通过第三次谐波产生对所得场分布进行成像,从而使我们能够量化拓扑模式的定位,这是激发的相对阶段的函数。我们的结果突出了工程意外变性对拓扑阶段形成的影响,从而扩大了拓扑纳米光系统的机会。
Topological photonics holds the promise for enhanced robustness of light localization and propagation enabled by the global symmetries of the system. While traditional designs of topological structures rely on lattice symmetries, there is an alternative strategy based on accidentally degenerate modes of the individual meta-atoms. Using this concept, we experimentally realize topological edge state in an integrated optical nanostructure based on the array of silicon nano-waveguides, each hosting a pair of degenerate modes at telecom wavelengths. Exploiting the hybrid nature of the topological mode formed by the superposition of waveguide modes with different symmetry, we implement coherent control of the topological edge state by adjusting the phase between the degenerate modes and demonstrating selective excitation of bulk or edge states. The resulting field distribution is imaged via third harmonic generation allowing us to quantify the localization of topological modes as a function of the relative phase of the excitations. Our results highlight the impact of engineered accidental degeneracies on the formation of topological phases, extending the opportunities stemming from topological nanophotonic systems.