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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Extension of the stability criterion for dissipative optical soliton solutions of a two-dimensional Ginzburg-Landau system generated from asymmetric inputs
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Extension of the stability criterion for dissipative optical soliton solutions of a two-dimensional Ginzburg-Landau system generated from asymmetric inputs

机译:由非对称输入产生的二维Ginzburg-Landau系统的耗散孤子解的稳定性判据的扩展

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摘要

The evolution and stability of dissipative optical spatial solitons generated from an input asymmetric with respect to two transverse coordinates x and y are studied. The variational approach used to investigate steady state solutions of a cubic-quintic Ginzburg-Landau equation is extended in order to consider initial conditions without radial symmetry. The stability criterion is generalized to the asymmetric case. A domain of dissipative parameters for stable solitonic solutions is determined. Following numerical simulations, an asymmetric input laser beam with dissipative parameters from this domain will always give a stable dissipative spatial soliton.
机译:研究了关于两个横向坐标x和y的输入不对称产生的耗散光学空间孤子的演化和稳定性。扩展了用于研究立方五次Ginzburg-Landau方程稳态解的变分方法,以考虑没有径向对称性的初始条件。稳定性准则被推广到非对称情况。确定了稳定孤子解的耗散参数域。根据数值模拟,具有来自该域的耗散参数的非对称输入激光束将始终提供稳定的耗散空间孤子。

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