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基于镱光纤激光器的、平均功率为1.8瓦、波长为266纳米的皮秒紫外光源。

Yb-fiber-laser-based, 1.8 W average power, picosecond ultraviolet source at 266 nm.

作者信息

Chaitanya Kumar S, Canals Casals J, Sanchez Bautista E, Devi K, Ebrahim-Zadeh M

出版信息

Opt Lett. 2015 May 15;40(10):2397-400. doi: 10.1364/OL.40.002397.

Abstract

We report a compact, stable, high-power, picosecond ultraviolet (UV) source at 266 nm based on simple single-pass two-step fourth-harmonic generation (FHG) of a mode-locked Yb-fiber laser at 79.5 MHz in LiB3O5 (LBO) and β-BaB2O4. Using a 30-mm-long LBO crystal for single-pass second-harmonic generation, we achieve up to 9.1 W of average green power at 532 nm for 16.8 W of Yb-fiber power at a conversion efficiency of 54% in 16.2 ps pulses with a TEM00 spatial profile and passive power stability better than 0.5% rms over 16 h. The generated green radiation is then used for single-pass FHG into the UV, providing as much as 1.8 W of average power at 266 nm under the optimum focusing condition in the presence of spatial walk-off, at an overall FHG conversion efficiency of ∼11%. The generated UV output exhibits passive power stability better than 4.6% rms over 1.5 h and beam pointing stability better than 84 μrad over 1 h. The UV output beam has a circularity of >80% in high beam quality with the TEM00 mode profile. To the best of our knowledge, this is the first report of picosecond UV generation at 266 nm at megahertz repetition rates.

摘要

我们报道了一种紧凑、稳定、高功率的266nm皮秒紫外(UV)光源,它基于在LiB3O5(LBO)和β-BaB2O4中对79.5MHz锁模Yb光纤激光器进行简单的单通两步四波混频(FHG)。使用一块30mm长的LBO晶体进行单通二次谐波产生,对于16.8W的Yb光纤功率,我们在16.2ps脉冲中以54%的转换效率实现了高达9.1W的532nm平均绿光功率,其TEM00空间分布,并且在16小时内被动功率稳定性优于0.5%均方根值。然后将产生的绿色辐射用于单通FHG转换为紫外光,在存在空间走离的最佳聚焦条件下,在266nm处提供高达1.8W的平均功率,总体FHG转换效率约为11%。产生的紫外输出在1.5小时内被动功率稳定性优于4.6%均方根值,在1小时内光束指向稳定性优于84μrad。紫外输出光束在具有TEM00模式分布的高光束质量下圆度大于80%。据我们所知,这是关于兆赫兹重复频率下产生266nm皮秒紫外光的首次报道。

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