大模面积高掺镱无光变暗al2o3 - p2o5 - sio2基光纤

M. Likhachev, S. Aleshkina, A. V. Shubin, M. Bubnov, E. Dianov, D. Lipatov, A. Guryanov
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引用次数: 25

摘要

大模区(LMA)掺镱光纤通常用于大功率连续波和脉冲光纤激光器和放大器。Yb3+离子在纯硅玻璃中的溶解度很小;因此,需要与Al2O3共掺杂来抑制聚类。当纤芯和包层(Δn)之间的折射率差约为0.002或更小时,LMA光纤(纤芯直径~ 20µm)中的单模工作是可能的。Al2O3和Yb2O3均具有较高的摩尔折射率(~ 0.0025/mol)。%和0.001/wt。%),因此只有少量的Al2O3浓度可以掺入到高掺镱的LMA光纤中。Yb3+离子的聚集导致光变暗(PD) -由于灰损失增加而导致激光性能随时间的退化。利用硅酸磷玻璃基体可以几乎完全抑制PD(与硅酸铝纤维相比,PD造成的灰色损失小10-100倍)[1],但这种纤维中典型的Δn约为0.005-0.015。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-mode-area highly Yb-doped photodarkening-free Al2O3-P2O5-SiO2-Based fiber
Large-mode area (LMA) Yb-doped fibers are routinely used in high-power CW and pulsed fiber lasers and amplifiers. Solubility of Yb3+ ions in pure silica glass is rather small; therefore co-doping with Al2O3 is required to suppress clustering. Single-mode operation in LMA fibers (core diameter ∼ 20 µm) is possible, when the refractive index difference between the core and the cladding (Δn) is about 0.002 or less. Both Al2O3 and Yb2O3 have a relatively high molar refractivity (∼0.0025/mol.% and 0.001/wt.%, respectively), and therefore only a small Al2O3 concentration can be incorporated into a highly Yb-doped LMA fiber. Clustering of Yb3+ ions results in photodarkening (PD) - degradation of the laser properties with time due to a grey loss increase. Utilization of the phosphorosilicate glass matrix allows one to suppress PD almost completely (the grey loss due to PD is 10–100 times smaller in comparison with that in the aluminosilicate fiber) [1], but a typical Δn in such fibers is about 0.005–0.015.
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