Carter Richard M, Yu Fei, Wadsworth William J, Shephard Jonathan D, Birks Tim, Knight Jonathan C, Hand Duncan P
Opt Express. 2017 Aug 21;25(17):20612-20621. doi: 10.1364/OE.25.020612.
We present the results of measurements of resonant spectral bend loss using a novel apparatus in a series of hollow core anti-resonant optical fibers, important for their applications in the delivery of industrial power ultra-short laser pulses. The measured bend losses exhibit clear wavelength-bend diameter resonances. We demonstrate, in good agreement with theoretical analysis, that the sensitivity to bend diameter (in terms of minimum bend radii) is dependent on the ratio between cladding and core structure size. By decreasing the cladding capillary diameter: core diameter ratio from 0.70 to 0.43 the minimum bend diameter is decreased from >160 mm to ~15 mm at a wavelength of 800 nm. Furthermore it is demonstrated that the exact position of the loss bands is highly dependent on the orientation of the fiber structure with the bend plane.
我们展示了使用一种新型仪器对一系列空心反谐振光纤中的谐振光谱弯曲损耗进行测量的结果,这对于它们在工业功率超短激光脉冲传输中的应用很重要。测量得到的弯曲损耗呈现出清晰的波长 - 弯曲直径共振。我们证明,与理论分析高度一致的是,对弯曲直径的敏感度(以最小弯曲半径衡量)取决于包层与纤芯结构尺寸之比。通过将包层毛细管直径与纤芯直径之比从0.70减小到0.43,在800 nm波长下,最小弯曲直径从大于160 mm减小到约15 mm。此外,还证明了损耗带的确切位置高度依赖于光纤结构与弯曲平面的取向。