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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Amalgamation of interacting light beamlets in Kerr-type media
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Amalgamation of interacting light beamlets in Kerr-type media

机译:Kerr型介质中相互作用小束的合并

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摘要

The interaction of optical filaments in bulk self-focusing media is investigated theoretically and numerically. The nature of this interaction is shown to vary with the incident individual powers and relative phases of the beamlets. By means of virial arguments supported by numerical results it is found that three distinct evolution regimes characterize two in-phase interacting filaments: (i) When each filament has a power below N-c/4, where N-c is the critical self-focusing threshold for a single wave, both filaments disperse along their propagation axis. (ii) When their respective powers lie between N-c/4 and N-c, they fuse into a single central lobe that may self-focus until collapse, depending on their initial separation distance. The critical distance below which a central lobe forms and collapses is estimated analytically. (iii) When their incident powers both exceed N,, initially separated filaments individually self-focus without mutual interaction. In contrast to in-phase beamlets, two light cells with opposite phase are shown to never coalesce. The extension of the self-focusing dynamics to optical filaments in bulk media with anomalous group-velocity dispersion is discussed. (C) 1997 Optical Society of America.
机译:从理论和数值上研究了光纤在本体自聚焦介质中的相互作用。已显示这种相互作用的性质随子束的入射个体功率和相对相位而变化。通过数值结果支持的病毒论证,发现三个截然不同的演化机制表征了两个同相相互作用的灯丝:(i)当每个灯丝的光焦度低于Nc / 4时,其中Nc是光焦度的临界自聚焦阈值单波,两条灯丝均沿其传播轴分散。 (ii)当它们各自的光焦度介于N-c / 4和N-c之间时,它们会融合成一个中心波瓣,该中心波瓣可能会自动聚焦直到崩溃,这取决于它们的初始分离距离。通过分析可以估算出临界距离,在该临界距离以下,中心叶就会形成并塌陷。 (iii)当它们的入射功率都超过N时,最初分离的灯丝会各自独立聚焦,而不会相互影响。与同相子束相反,两个反相的光单元显示从未合并。讨论了自聚焦动力学对群速度异常色散介质中光学纤维的扩展。 (C)1997年美国眼镜学会。

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