Feit M D, Fleck J A
Appl Opt. 1980 Apr 1;19(7):1154-64. doi: 10.1364/AO.19.001154.
Propagating beam solutions for optical waveguides can be made to generate such mode-related properties as propagation constants, relative mode powers, and group delays with high precision and considerable flexibility. These quantities are needed in the analysis of optical fiber dispersion. The technique requires the generation of correlation functions from the numerical solutions of a wave equation. These correlation functions are in turn Fourier-transformed with respect to axial distance z. The resulting spectra display sharp resonances corresponding to mode groups, and the positions and heights of these resonances determine the previously mentioned mode properties. The spectral analysis is made highly accurate by the use of line-shape fitting techniques. With this method, mode group delays can be determined to a precision of +/-0.12 psec/km using a computation covering a 5-cm propagation path.
光波导的传播光束解能够高精度且灵活地生成诸如传播常数、相对模式功率和群延迟等与模式相关的特性。光纤色散分析需要这些量。该技术需要从波动方程的数值解中生成相关函数。这些相关函数再相对于轴向距离z进行傅里叶变换。所得光谱显示出与模式组相对应的尖锐共振,这些共振的位置和高度决定了前面提到的模式特性。通过使用线形拟合技术,光谱分析的精度很高。使用这种方法,通过覆盖5厘米传播路径的计算,可以将模式群延迟的精度确定为±0.12皮秒/千米。