首页> 外文期刊>Journal of Experimental and Theoretical Physics >Peculiarities of the Self-Action of Inclined Wave Beams Incident on a Discrete System of Optical Fibers
【24h】

Peculiarities of the Self-Action of Inclined Wave Beams Incident on a Discrete System of Optical Fibers

机译:入射在光纤的离散系统上的倾斜波束自动作的特性

获取原文
获取原文并翻译 | 示例
           

摘要

Based on a discrete nonlinear Schrodinger equation (DNSE), we studied analytically and numerically the peculiarities of the self-action of one-dimensional quasi-optic wave beams injected into a spatially inhomogeneous medium consisting of a set of equidistant mutually coupled optical fibers. A variational approach allowing the prediction of the global evolution of localized fields with the initially plane phase front was developed. The self-consistent equations are obtained for the main parameters of such beams (the position of the center of mass, the effective width, and linear and quadratic phase-front corrections) in the aberrationless approximation. The case of radiation incident on a periodic system of nonlinear optical fibers at an angle to the axis oriented along them is analyzed in detail. It is shown that for the radiation power exceeding a critical value, the self-focusing of the wave field is observed, which is accompanied by the shift of the intensity maximum followed by the concentration of the main part of radiation only in one of the structural elements of the array under study. In this case, the beams propagate along paths considerably different from linear and the direction of their propagation changes compared to the initial direction. Asymptotic expressions are found that allow us to estimate the self-focusing length and to determine quite accurately the final position of a point with the maximum field amplitude after radiation trapping a channel. The results of the qualitative study of the possible self-channeling regimes for wave beams in a system of weakly coupled optical fibers in the aberrationless approximation are compared with the results of direct numerical simulations within the DNSE framework.
机译:基于离散的非线性Schrodinger方程(DNSE),我们在分析上和数值上进行了研究,并在数值上进行了一维的诸着介质的一维准光波束的自动作的特性,其由一组等距相互耦合的光纤组成。开发了一种改变方法,允许预测具有初始平面前正面的局部区域的全局演化。在像差近似下,为这种光束的主要参数(质量尺寸,有效宽度和线性和二次相位正校正的位置)的主要参数获得自我一致的等式。详细地分析了与沿着它们取向的角度的非线性光纤的周期性系统的辐射的情况。结果表明,对于超过临界值的辐射功率,观察波场的自聚焦,其伴随着强度最大值的偏移,然后仅在结构中的一个结构中辐射的主要部分的浓度。研究中的阵列元素。在这种情况下,光束沿着与线性的线性显着不同的路径传播,并且它们的传播方向与初始方向相比变化。发现渐近表达式允许我们估计自对焦长度,并在捕获频道辐射后的最大场幅度的最大场幅度确定点的最终位置。与DNSE框架内的弱耦合光纤系统中的弱耦合光纤系统中的波束的质量研究结果与DNSE框架内的直接数值模拟的结果进行了比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号