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重掺铒氟化物光纤中的3.42微米激光发射。

3.42 µm lasing in heavily-erbium-doped fluoride fibers.

作者信息

Maes Frédéric, Stihler Christoph, Pleau Louis-Philippe, Fortin Vincent, Limpert Jens, Bernier Martin, Vallée Réal

出版信息

Opt Express. 2019 Feb 4;27(3):2170-2183. doi: 10.1364/OE.27.002170.

Abstract

In this paper, we investigate laser emission at 3.4μm in heavily-erbium-doped fluoride fibers using dual-wavelength pumping. To this extent, a monolithic 7 mol% erbium-doped fluoride fiber laser bounded by intracore fiber Bragg gratings at 3.42 μm is used to demonstrate a record efficiency of 38.6 % with respect to the 1976 nm pump. Through numerical modeling, we show that similar laser performances at 3.4 μm can be expected in fluoride fibers with erbium concentrations ranging between 1 - 7 mol%, although power scaling should rely on lightly-doped fibers to mitigate the heat load. Moreover, this work studies transverse mode-beating of the 1976 nm core pump and its role in the generation of a periodic luminescent grating and in the trapping of excitation in the metastable energy levels of the erbium system. Finally, we also report on the bistability of the 3.42 μm output power of the 7 mol% erbium-doped fluoride fiber laser.

摘要

在本文中,我们研究了使用双波长泵浦的重掺铒氟化物光纤中3.4μm处的激光发射。在此范围内,一个由3.42μm芯内光纤布拉格光栅界定的整体式7摩尔%掺铒氟化物光纤激光器被用于证明相对于1976nm泵浦具有38.6%的创纪录效率。通过数值模拟,我们表明,在铒浓度介于1 - 7摩尔%之间的氟化物光纤中,可以预期在3.4μm处有类似的激光性能,尽管功率缩放应依赖于轻掺杂光纤以减轻热负载。此外,这项工作研究了1976nm芯泵浦的横向模式拍频及其在周期性发光光栅的产生以及在铒系统亚稳能级中激发俘获方面的作用。最后,我们还报告了7摩尔%掺铒氟化物光纤激光器3.42μm输出功率的双稳性。

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