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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Propagation of hypergeometric Gaussian beams in strongly nonlocal nonlinear media
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Propagation of hypergeometric Gaussian beams in strongly nonlocal nonlinear media

机译:高度距离高斯光束在强非局部非线性非线性介质中的传播

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摘要

Optical vortex beams have attracted lots of interest due to its potential application in image processing, optical trapping and optical communications, etc. In this work, we theoretically and numerically investigated the propagation properties of hypergeometric Gaussian (HyGG) beams in strongly nonlocal nonlinear media. Based on the Snyder-Mitchell model, analytical expressions for propagation of the HyGG beams in strongly nonlocal nonlinear media were obtained. The influence of input power and optical parameters on the evolutions of the beam width and radius of curvature is illustrated, respectively. The results show that the beam width and radius of curvature of the HyGG beams remain invariant, like a soliton when the input power is equal to the critical power. Otherwise, it varies periodically like a breather, which is the result of competition between the beam diffraction and nonlinearity of the medium.
机译:由于其在图像处理,光学捕获和光学通信等中的潜在应用,光学涡旋光束引起了许多感兴趣的感兴趣。理论上和数量地研究了强大的非局部非线性介质中超高度高斯(HYGG)光束的传播特性。 基于SNYDER-MITCHELL模型,获得了在强不局部非线性介质中的高效梁传播的分析表达式。 分别示出了输入功率和光学参数对光束宽度和曲率半径的影响。 结果表明,当输入功率等于临界功率时,金刚梁的横梁宽度和曲率的曲率仍然不变。 否则,它周期性地像呼吸道一样变化,这是介质的梁衍射与非线性之间的竞争的结果。

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