Nonlinear perturbation of a high-order exceptional point: skin discrete breathers and the hierarchical power-law scaling
Hui Jiang, Enhong Cheng, Ziyu Zhou, Li-Jun Lang

TL;DR
This paper investigates the nonlinear behavior near a high-order exceptional point in a non-Hermitian system, revealing unique skin discrete breathers with hierarchical power-law scaling and double-exponential decay, stable across nonlinearity strengths.
Contribution
It introduces the concept of skin discrete breathers in nonlinear non-Hermitian systems and characterizes their hierarchical power-law scaling and stability properties.
Findings
Discovery of skin discrete breathers aggregating at boundaries.
Hierarchical power-law scaling of nonlinear energies near the EP.
Double-exponential decay of the breathers, distinct from linear systems.
Abstract
We study the nonlinear perturbation of a high-order exceptional point (EP) of the order equal to the system site number in a Hatano-Nelson model with unidirectional hopping and Kerr nonlinearity. Notably, We find a class of discrete breathers that aggregate to one boundary, here named as skin discrete breathers (SDBs). The nonlinear spectrum of these SDBs shows a hierarchical power-law scaling near the EP. Specifically, the response of nonlinear energy to the perturbation is given by , where is the power with labeling the nonlinear energy bands. This is in sharp contrast to the -th root of a linear perturbation in general. These SDBs decay in a double-exponential manner, unlike the edge states or skin modes in linear systems, which decay exponentially. Furthermore, these SDBs can survive over the full range of…
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Taxonomy
TopicsNonlinear Photonic Systems · Nonlinear Waves and Solitons · Advanced Fiber Laser Technologies
