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Analyses and computations of asymmetric Z-scan for large phase shift from diffraction theory

机译:基于衍射理论的大相移非对称Z扫描的分析与计算

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Based on Fresnel-Kirchhoff diffraction theory, we set up a diffraction model of nonlinear optical media to Gaussian beam, which can interpret the Z-scan phenomenon from a new way. This theory is not only well consistent with the conventional Z-scan theory in the case of small nonlinear phase shift, but also can fit for the lager nonlinear phase shift. Numeric computations indicate the shape of the Z-scan curve is greatly affected by the value of the nonlinear phase shift. The symmetric dispersion-like Z-scan curve is only valid for small nonlinear phase shift (|Δ_(φ0)| < π), but with increasing the nonlinear phase shift, the valley of the transmittance is severely suppressed and the peak is greatly enhanced. Further calculations show some new interesting results.
机译:基于菲涅尔-基尔霍夫衍射理论,建立了非线性光学介质对高斯光束的衍射模型,可以用一种新的方式来解释Z扫描现象。该理论不仅在非线性相移较小的情况下与常规Z扫描理论很好地吻合,而且还可以适合较大的非线性相移。数值计算表明Z扫描曲线的形状受非线性相移值的影响很大。对称的分散状Z扫描曲线仅适用于小的非线性相移(|Δ_(φ0)| <π),但是随着非线性相移的增加,透射率的谷值会受到严重抑制,峰值大大增强。进一步的计算显示出一些有趣的新结果。

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