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Spatiotemporal dynamics of counterpropagating Airy beams

机译:反向传播的艾里光束的时空动力学

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摘要

We analyse theoretically the spatiotemporal dynamics of two incoherent counterpropagating Airy beams interacting in a photorefractive crystal under focusing conditions. For a large enough nonlinearity strength the interaction between the two Airy beams leads to light-induced waveguiding. The stability of the waveguide is determined by the crystal length, the nonlinearity strength and the beam’s intensities and is improved when comparing to the situation using Gaussian beams. We further identify the threshold above which the waveguide is no longer static but evolves dynamically either time-periodically or even chaotically. Above the stability threshold, each Airy-soliton moves erratically between privileged output positions that correspond to the spatial positions of the lobes of the counterpropagating Airy beam. These results suggest new ways of creating dynamically varying waveguides, optical logic gates and chaos-based computing.
机译:我们从理论上分析了聚焦条件下在光折射晶体中相互作用的两个非相干反向传播的艾里光束的时空动力学。对于足够大的非线性强度,两个艾里光束之间的相互作用导致光诱导的波导。波导的稳定性取决于晶体长度,非线性强度和光束强度,与使用高斯光束的情况相比,波导的稳定性有所提高。我们进一步确定了阈值,在该阈值之上,波导不再是静态的,而是随时间周期性地甚至混沌地动态演化。在稳定性阈值之上,每个艾里孤立子在特权输出位置之间不规则地移动,该特权输出位置与反向传播艾里光束的波瓣的空间位置相对应。这些结果提出了创建动态变化的波导,光学逻辑门和基于混沌的计算的新方法。

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