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高功率超高斯光束传输的非线性补偿研究
Compensation of nonlinear self-focusing in propagation of high power super-Gaussian beams
【摘要】 分析了高功率超高斯光束在非线性介质中传播的基本理论,用分步傅里叶变换方法计算了10阶超高斯光束在非线性介质内的传输过程,最后采用具有负折射率系数的非线性介质作为补偿材料,对不同的补偿方式进行了对比分析。研究表明,四种补偿方式均可以大大减小光束的B积分,有效防止超高斯光束边缘的非线性增长,降低光束的小尺度自聚焦,同时选用后补偿作为最佳补偿方式。
【Abstract】 The basic theory of a beam passing through the nonlinear medium is analysed in this paper, and the process of a ten-step high power supper-Gaussion beam passing through the nonlinear medium is calculated with the FFT. A negative nonlinear refractive index material was used as the compensating medium to compare different compensation methods. Studies suggest compensation can decrease B integral along the beam direction in a nonlinear medium, and can cancel the self-focusing of beams greatly. It can also avoid the nonlinear increase on the edges of super-Gaussian beams effectively. The compensation after nonlinear medium was selected as the idea compensating methods.
【Key words】 Nonlinear compensation; Super-Gaussian beams; B integral; Small-scale self-focusing;
- 【文献出处】 强激光与粒子束 ,High Power Laser & Particle Beams , 编辑部邮箱 ,2004年03期
- 【分类号】O437
- 【被引频次】13
- 【下载频次】238