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PT 对称耦合器二维晶格上的离散孤子与涡旋

Discrete solitons and vortices on two-dimensional lattices of PT-symmetric couplers.

作者信息

Chen Zhaopin, Liu Jingfeng, Fu Shenhe, Li Yongyao, Malomed Boris A

出版信息

Opt Express. 2014 Dec 1;22(24):29679-92. doi: 10.1364/OE.22.029679.

Abstract

We introduce a 2D network built of PT-symmetric dimers with on-site cubic nonlinearity, the gain and loss elements of the dimers being linked by parallel square-shaped lattices. The system may be realized as a set of PT-symmetric dual-core waveguides embedded into a photonic crystal. The system supports PT-symmetric and antisymmetric fundamental solitons (FSs) and on-site-centered solitary vortices (OnVs). Stability of these discrete solitons is the central topic of the consideration. Their stability regions in the underlying parameter space are identified through the computation of stability eigenvalues, and verified by direct simulations. Symmetric FSs represent the system's ground state, being stable at lowest values of the power, while anti-symmetric FSs and OnVs are stable at higher powers. Symmetric OnVs, which are also stable at lower powers, are remarkably robust modes: on the contrary to other PT-symmetric states, unstable OnVs do not blow up, but spontaneously rebuild themselves into stable FSs.

摘要

我们介绍了一种由具有在位立方非线性的PT对称二聚体构建的二维网络,二聚体的增益和损耗元件通过平行方形晶格相连。该系统可以实现为嵌入光子晶体中的一组PT对称双核波导。该系统支持PT对称和反对称基孤子(FSs)以及在位中心孤子涡旋(OnVs)。这些离散孤子的稳定性是考虑的核心主题。通过计算稳定性特征值确定它们在基础参数空间中的稳定区域,并通过直接模拟进行验证。对称FSs代表系统的基态,在最低功率值时稳定,而反对称FSs和OnVs在较高功率时稳定。对称OnVs在较低功率时也稳定,是非常稳健的模式:与其他PT对称状态相反,不稳定的OnVs不会爆炸,而是会自发地重新构建为稳定的FSs。

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