Koshiba Masanori, Saitoh Kunimasa, Takenaga Katsuhiro, Matsuo Shoichiro
Division of Media and Network Technologies, Hokkaido University, Sapporo 060-0814, Japan.
Opt Express. 2011 Dec 12;19(26):B102-11. doi: 10.1364/OE.19.00B102.
Coupled-mode and coupled-power theories are described for multi-core fiber design and analysis. First, in order to satisfy the law of power conservation, mode-coupling coefficients are redefined and then, closed-form power-coupling coefficients are derived based on exponential, Gaussian, and triangular autocorrelation functions. Using the coupled-mode and coupled-power theories, impacts of random phase-offsets and correlation lengths on crosstalk in multi-core fibers are investigated for the first time. The simulation results are in good agreement with the measurement results. Furthermore, from the simulation results obtained by both theories, it is confirmed that the reciprocity is satisfied in multi-core fibers.
描述了用于多芯光纤设计和分析的耦合模理论和耦合功率理论。首先,为了满足功率守恒定律,重新定义了模式耦合系数,然后基于指数、高斯和三角自相关函数推导了闭式功率耦合系数。首次利用耦合模理论和耦合功率理论研究了随机相位偏移和相关长度对多芯光纤串扰的影响。仿真结果与测量结果吻合良好。此外,从两种理论得到的仿真结果可以证实,多芯光纤满足互易性。