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Perturbative dynamics of stationary states in nonlinear parity-time symmetric coupler

机译:非线性奇偶时间对称耦合器中稳态的摄动动力学

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We investigate the nonlinear parity-time (PT) symmetric coupler from a dynamical perspective. As opposed to linear PT-coupler where the PT threshold dictates the evolutionary characteristics of optical power in the two waveguides, in a nonlinear coupler, the PT threshold governs the existence of stationary points. We have found that the stability of the ground state undergoes a phase transition when the gain/loss coefficient is increased from zero to beyond the PT threshold. Moreover, we found that instabilities in initial conditions can lead to aperiodic oscillations as well as exponential growth and decay of optical power. At the PT threshold, we observed the existence of a stable attractor under the influence of fluctuating gain/loss coefficient. Phase plane analysis has shown us the presence of a toroidal chaotic attractor. The chaotic dynamics can be controlled by a judicious choice of the waveguide parameters. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们从动力学角度研究了非线性奇偶时间(PT)对称耦合器。与线性PT耦合器(其中PT阈值指示两个波导中光功率的演化特性)相反,在非线性耦合器中,PT阈值控制静止点的存在。我们发现,当增益/损耗系数从零增加到超过PT阈值时,基态的稳定性会经历相变。此外,我们发现初始条件下的不稳定性会导致非周期性振荡以及光功率的指数增长和衰减。在PT阈值处,我们观察到在波动的损益系数波动下存在稳定的吸引子。相平面分析向我们展示了环形混沌吸引子的存在。可以通过明智地选择波导参数来控制混沌动力学。 (C)2017 Elsevier B.V.保留所有权利。

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