Zhou Da-Peng, Dong Yongkang, Chen Liang, Bao Xiaoyi
Department of Physics, University of Ottawa, Ottawa, ON K1N 6N5, Canada.
Opt Express. 2011 Oct 10;19(21):20785-98. doi: 10.1364/OE.19.020785.
We investigate the Brillouin dynamic grating generation and detection process in polarization-maintaining fibers for the case of continuous wave operation both theoretically and experimentally. The four interacting light waves couple together through the material density variation due to stimulated Brillouin scattering. The four coupled equations describing this process are derived and solved analytically for two cases: moving fiber Bragg grating approximation and undepleted pump and probe waves approximation. We show that the conventional grating model oversimplifies the Brillouin dynamic grating generation and detection process, since it neglects the coupling between all the four waves, while the four-wave mixing model clearly demonstrates this coupling process and it is verified experimentally by measuring the reflection of the Brillouin dynamic grating. The trends of the theoretical calculation and experimental results agree well with each other confirming that the Brillouin dynamic grating generation and detection process is indeed a four-wave mixing process.
我们在理论和实验上研究了保偏光纤中连续波工作情况下的布里渊动态光栅产生和检测过程。由于受激布里渊散射,四个相互作用的光波通过材料密度变化耦合在一起。推导了描述此过程的四个耦合方程,并针对两种情况进行了解析求解:移动光纤布拉格光栅近似和泵浦波与探测波未耗尽近似。我们表明,传统光栅模型过度简化了布里渊动态光栅产生和检测过程,因为它忽略了所有四个波之间的耦合,而四波混频模型清楚地展示了这种耦合过程,并且通过测量布里渊动态光栅的反射在实验上得到了验证。理论计算趋势与实验结果吻合良好,证实了布里渊动态光栅产生和检测过程确实是一个四波混频过程。