首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Self-focusing of elliptic beams: an example of the failure of the aberrationless approximation
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Self-focusing of elliptic beams: an example of the failure of the aberrationless approximation

机译:椭圆光束的自动聚焦:无像差近似失败的一个例子

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We show that the increase in critical power for elliptic input beams is only 40% of what had been previously estimated based on the aberrationless approximation. We also find a theoretical upper bound for the critical power, above which elliptic beams always collapse. If the power of an elliptic beam is above critical, the beam self-focuses and undergoes partial beam blowup, during which the collapsing part of the beam approaches a circular Townesian profile. As a result, during further propagation additional small mechanisms, which are neglected in the derivation of the nonlinear Schrodinger equation (NLS) from Maxwell's equations, can have large effects, which are the same as in the case of circular beams. Our simulations show that most predictions for elliptic beams based on the aberrationless approximation are either quantitatively inaccurate or simply wrong. This failure of the aberrationless approximation is related to its inability to capture neither the partial beam collapse nor the subsequent delicate balance between the Kerr nonlinearity and diffraction. We present an alternative two-stage approach and use it to analyze the effect of nonlinear saturation, nonparaxiality, and time dispersion on the propagation of elliptic beams. The results of the two-stage found to be in good agreement with NLS simulations. (C) 2000 Optical Society of America. [References: 33]
机译:我们表明,椭圆输入光束的临界功率的增加仅为先前基于无像差近似估计的临界功率的40%。我们还找到了临界功率的理论上限,在该上限之上,椭圆光束始终会崩溃。如果椭圆光束的功率超过临界,则光束会自动聚焦并经历部分光束爆炸,在此期间,光束的塌陷部分接近圆形的Townesian轮廓。结果,在进一步传播期间,在从麦克斯韦方程式推导非线性薛定inger方程式(NLS)时被忽略的其他小的机制可能会产生很大的影响,与圆形光束的情况相同。我们的仿真表明,基于无像差近似的椭圆光束的大多数预测在数量上都是不准确的,或者根本就是错误的。无像差逼近的失败与无法捕捉部分光束塌陷或Kerr非线性与衍射之间的微妙平衡无关。我们提出了一种替代性的两阶段方法,并使用它来分析非线性饱和,非傍轴性和时间色散对椭圆光束传播的影响。发现两阶段的结果与NLS模拟非常吻合。 (C)2000年美国眼镜学会。 [参考:33]

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