Nakazawa Masataka, Yoshida Masato, Hirooka Toshihiko
Opt Express. 2014 Dec 15;22(25):31299-309. doi: 10.1364/OE.22.031299.
We describe the nondestructive measurement of mode coupling along a few-mode fiber using a synchronous multi-channel optical time-domain reflectometer (OTDR). By installing a few-mode fiber (FMF) coupler made with a phase mask method, we excite the LP01 mode in an FMF under the test as an input mode, and then we detect backward Rayleigh scattered LP11a or LP11b modes, which were generated as a result of the mode coupling through the coupler. The mode coupling distribution between the LP01 and LP11a,b modes along the test FMF was successfully measured with a 10-m spatial resolution by obtaining the ratio between the backscattered LP01 mode and LP11a or LP11b. The value of the mode coupling obtained with the present method agreed well with that obtained with the conventional transmission method.
我们描述了使用同步多通道光时域反射仪(OTDR)对少模光纤中的模式耦合进行无损测量。通过安装采用相位掩膜法制作的少模光纤(FMF)耦合器,我们在测试的FMF中激发LP01模式作为输入模式,然后检测由于通过耦合器的模式耦合而产生的反向瑞利散射LP11a或LP11b模式。通过获取后向散射的LP01模式与LP11a或LP11b之间的比率,成功地以10米的空间分辨率测量了沿测试FMF的LP01和LP11a、b模式之间的模式耦合分布。用本方法获得的模式耦合值与用传统传输方法获得的值吻合良好。