Photonlab, Istituto Mario Boella, Turin 10138, Italy.
Opt Lett. 2012 Dec 1;37(23):4922-4. doi: 10.1364/OL.37.004922.
We report on the fabrication and optical assessment of an all-solid tellurite-glass photonic bandgap fiber. The manufacturing process via a preform drawing approach and the fiber characterization procedures are described and discussed. The fiber exhibits some minor morphological deformations that do not prevent the observation of optical confinement within the fiber by bandgap effects. The experimental fiber attenuation spectrum displays clear bandgap confinement regions whose positions are confirmed by modeling the guiding properties of the ideal geometry using a plane-wave expansion method. The model identifies the bound modes of the structure and provides confirmation of experimentally observed mode field profiles.
我们报告了一种全固态碲酸盐玻璃光子带隙光纤的制造和光学评估。描述并讨论了通过预制棒拉丝法制造光纤和光纤特性测试的过程。光纤存在一些轻微的形貌变形,但这并不妨碍通过带隙效应观察光纤内的光限制。实验光纤衰减谱显示出清晰的带隙限制区域,其位置通过使用平面波展开法对理想几何结构的导光特性进行建模得到确认。该模型确定了结构的束缚模式,并证实了实验观测到的模式场分布。