Guo Min, Xia Shiqi, Wang Nan, Song Daohong, Chen Zhigang, Yang Jianke
Opt Lett. 2020 Dec 1;45(23):6466-6469. doi: 10.1364/OL.411102.
We study both theoretically and experimentally the effect of nonlinearity on topologically protected linear interface modes in a photonic Su-Schrieffer-Heeger (SSH) lattice. It is shown that under either focusing or defocusing nonlinearity, this linear topological mode of the SSH lattice turns into a family of topological gap solitons. These solitons are stable. However, they exhibit only a low amplitude and power and are thus weakly nonlinear, even when the bandgap of the SSH lattice is wide. As a consequence, if the initial beam has modest or high power, it will either delocalize, or evolve into a soliton not belonging to the family of topological gap solitons. These theoretical predictions are observed in our experiments with optically induced SSH-type photorefractive lattices.
我们从理论和实验两方面研究了非线性对光子Su-Schrieffer-Heeger(SSH)晶格中拓扑保护线性界面模式的影响。结果表明,在聚焦或散焦非线性条件下,SSH晶格的这种线性拓扑模式会转变为一族拓扑带隙孤子。这些孤子是稳定的。然而,它们仅表现出低振幅和低功率,因此即使SSH晶格的带隙很宽,其非线性也很弱。因此,如果初始光束具有适度或高功率,它将要么离域,要么演变成不属于拓扑带隙孤子族的孤子。我们在光学诱导的SSH型光折变晶格实验中观察到了这些理论预测。