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中国物理学会期刊

光脉冲传输数值模拟的分步小波方法

CSTR: 32037.14.aps.54.2779

Split-step wavelet method for numerical simulation of optical pulse propagation

CSTR: 32037.14.aps.54.2779
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  • 从信号的多尺度小波分解和正交小波变换出发,将描述光学介质中脉冲传输的非线性薛定谔 方程(NLSE)表示为小波域中的分步算符形式,给出了分步小波算法的迭代公式,导出了线 性算符在小波域中的具体表式,并讨论微分算符的矩阵结构.作为一个例子,用分步小波方 法(SSWM)解NLSE,给出了超短高斯脉冲在光纤中线性和非线性传输的波形演化,并与解析 解和分步傅里叶方法的结果作了比较.结果表明,分步小波方法是研究脉冲在光学介质中传 输的一种有效的数值计算方法.

     

    The multi-scale wavelet decomposition and orthogonal wavelet transform are outli ned and applied to the representation of optical pulses. The nonlinear Schrdin ger(NSL) equation, which describes the pulse propagation in optical media, is us ed to represent the split-step operator form in wavelet domain. The iterative eq uation of the split-step wavelet algorithm for the solution of the NLS equation is presented. The expression of the linear operator in wavelet domain is given a nd the framework of the derivative operator is discussed. As an example, the linear and nonlinear propagations of ultrashort Gaussian pulse through optical fibers are numerically simulated by using the split-step wavelet method (SSWM), and compared with that by using the analytic solution and the split-step Fourier met hod. The results show that SSWM is an accurate and effective numerical method fo r the study of the pulses propagation through optical media.

     

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