论文标题
观察拓扑三聚体阵列中的边缘孤子
Observation of edge solitons in topological trimer arrays
论文作者
论文摘要
我们报告了非线性光定位和边缘孤子形成在FS-LASER书面Trimer波导阵列边缘的实验观察结果,在该阵列中,从非型号到拓扑阶段的过渡受到相邻三聚体之间的间距的控制。我们发现,在以前的政权中,边缘孤子仅出现在相当大的功率阈值之上,而在后者中,它们是从线性状态下分叉的。在广泛的功率范围内观察到边缘孤子,它们的传播常数落入系统的拓扑间隙之一,而当相当多的非线性将传播常数驱动到允许的频段时,会观察到部分离域化,从而导致与大型模式耦合。我们的结果提供了在具有不同内部结构的两种类型的拓扑边缘孤子的相同或不同拓扑间隙中的共存和选择性激发的直接实验证据,即使在非异端系统中也很少观察到它们。这也构成了在具有多个拓扑间隙的非线性系统中形成拓扑孤子的第一个实验证据。
We report the experimental observation of nonlinear light localization and edge soliton formation at the edges of fs-laser written trimer waveguide arrays, where transition from non-topological to topological phases is controlled by the spacing between neighboring trimers. We found that, in the former regime, edge solitons occur only above a considerable power threshold, whereas in the latter one they bifurcate from linear states. Edge solitons are observed in a broad power range where their propagation constant falls into one of the topological gaps of the system, while partial delocalization is observed when considerable nonlinearity drives the propagation constant into an allowed band, causing coupling with bulk modes. Our results provide direct experimental evidence of the coexistence and selective excitation in the same or in different topological gaps of two types of topological edge solitons with different internal structures, which can rarely be observed even in nontopological systems. This also constitutes the first experimental evidence of formation of topological solitons in a nonlinear system with more than one topological gap.