Fiber Optics Research Center of the Russian Academy of Sciences, Moscow, Russia. sv‐
Opt Lett. 2011 Sep 15;36(18):3566-8. doi: 10.1364/OL.36.003566.
A design of a polarizing all-glass Bragg fiber with a microstructure core has been proposed for the first time. This design provides suppression of high-order modes and of one of the polarization states of the fundamental mode. The polarizing fiber was fabricated by a new, simple method based on a combination of the modified chemical vapor deposition (MCVD) process and the rod-in-tube technique. The mode field area has been found to be about 870 μm² near λ=1064 nm. The polarization extinction ratio better than 13 dB has been observed over a 33% wavelength range (from 1 to 1.4 μm) after propagation in a 1.7 m fiber piece bent to a radius of 70 cm.
首次提出了一种具有微结构芯的全玻璃布拉格光纤的设计。该设计抑制了高阶模式和基模的一个偏振态。偏振光纤是通过一种新的、简单的方法制造的,该方法基于改进的化学气相沉积(MCVD)工艺和棒管技术的结合。在 λ=1064nm 附近,模式场面积约为 870μm²。在 1.7m 光纤段传播后,在半径为 70cm 的弯曲状态下,在 1%到 1.4μm 的 33%波长范围内观察到偏振消光比优于 13dB。