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输出功率为200毫瓦的高效辐射平衡掺镱石英光纤激光器。

High-efficiency radiation-balanced Yb-doped silica fiber laser with 200-mW output.

作者信息

Balliu Enkeleda, Meehan Bailey, Cahoon Mary Ann, Hawkins Thomas W, Ballato John, Dragic Peter D, Boilard Tommy, Talbot Lauris, Bernier Martin, Digonnet Michel J F

出版信息

Opt Lett. 2024 Apr 15;49(8):2021-2024. doi: 10.1364/OL.517568.

Abstract

The focus of this study was the development of a second generation of fiber lasers internally cooled by anti-Stokes fluorescence. The laser consisted of a length of a single-mode fiber spliced to fiber Bragg gratings to form the optical resonator. The fiber was single-moded at the pump (1040 nm) and signal (1064 nm) wavelengths. Its core was heavily doped with Yb, in the initial form of CaF nanoparticles, and co-doped with Al to reduce quenching and improve the cooling efficiency. After optimizing the fiber length (4.1 m) and output-coupler reflectivity (3.3%), the fiber laser exhibited a threshold of 160 mW, an optical efficiency of 56.8%, and a radiation-balanced output power (no net heat generation) of 192 mW. On all three metrics, this performance is significantly better than the only previously reported radiation-balanced fiber laser, which is even more meaningful given that the small size of the single-mode fiber core (7.8-µm diameter). At the maximum output power (∼2 W), the average fiber temperature was still barely above room temperature (428 mK). This work demonstrates that with anti-Stokes pumping, it is possible to induce significant gain and energy storage in a small-core Yb-doped fiber while keeping the fiber cool.

摘要

本研究的重点是开发第二代通过反斯托克斯荧光进行内部冷却的光纤激光器。该激光器由一段与光纤布拉格光栅熔接的单模光纤组成,以形成光学谐振器。该光纤在泵浦波长(1040 nm)和信号波长(1064 nm)下为单模。其纤芯大量掺杂Yb,初始形式为CaF纳米颗粒,并共掺杂Al以减少猝灭并提高冷却效率。在优化光纤长度(4.1 m)和输出耦合器反射率(3.3%)后,该光纤激光器的阈值为160 mW,光学效率为56.8%,辐射平衡输出功率(无净热量产生)为192 mW。在所有这三个指标上,该性能明显优于之前唯一报道的辐射平衡光纤激光器,考虑到单模光纤纤芯尺寸小(直径7.8 µm),这一点更有意义。在最大输出功率(约2 W)时,光纤的平均温度仍仅略高于室温(428 mK)。这项工作表明,通过反斯托克斯泵浦,可以在小芯掺Yb光纤中实现显著的增益和能量存储,同时保持光纤冷却。

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