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脉冲能量超过10微焦耳水平的飞秒薄片激光振荡器。

Femtosecond thin disk laser oscillator with pulse energy beyond the 10-microjoule level.

作者信息

Marchese S V, Baer C R E, Engqvist A G, Hashimoto S, Maas D J H C, Golling M, Südmeyer T, Keller U

机构信息

Department of Physics, Institute of Quantum Electronics, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

Opt Express. 2008 Apr 28;16(9):6397-407. doi: 10.1364/oe.16.006397.

Abstract

We report on a passively mode-locked Yb:YAG thin disk laser oscillator that generates 11.3-microJ pulses without the use of any additional external amplification. A repetition rate of 4 MHz is obtained using a 23.4-m-long multiple-pass cavity that extends the resonator length to a total of 37 m. The nearly transform-limited pulses at 45 W of average output power have a duration of 791 fs with a 1.56-nm-broad spectrum centered at 1030 nm. The laser is operated in a helium atmosphere to eliminate the air nonlinearity inside the resonator that previously limited the pulse energy.

摘要

我们报道了一种被动锁模Yb:YAG薄片激光振荡器,该振荡器无需任何额外的外部放大即可产生11.3微焦的脉冲。通过使用一个23.4米长的多程腔,将谐振器长度延长至总共37米,获得了4兆赫的重复频率。平均输出功率为45瓦时,接近变换极限的脉冲持续时间为791飞秒,光谱带宽为1.56纳米,中心波长为1030纳米。该激光器在氦气气氛中运行,以消除先前限制脉冲能量的谐振腔内的空气非线性。

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