Imeshev G, Fermann M
Opt Express. 2005 Sep 19;13(19):7424-31. doi: 10.1364/opex.13.007424.
We report for the first time an all-fiber laser system that generates tunable Watt-level femtosecond pulses at around 2 microm without an external pulse compressor. The system is based on amplification of a Raman shifted Er-doped fiber laser in a Tm-doped 25-microm-core fiber. We obtain 108-fs pulses at 1980 nm with an average power of 3.1 W and a pulse energy of 31 nJ. The peak power at the output of the amplifier is estimated as ~230 kW, which to the best of our knowledge is the highest peak power obtained from a femtosecond or a few-picosecond amplifier based on any doped fiber. The amplified output is frequency-doubled to produce 78-fs pulses at 990 nm with an average power of 1.5 W and a pulse energy of 15 nJ. We demonstrate broad wavelength tunability around 2 microm as well as around 1 microm.
我们首次报道了一种全光纤激光系统,该系统无需外部脉冲压缩器即可在2微米左右产生可调谐的瓦级飞秒脉冲。该系统基于在25微米纤芯的掺铥光纤中对拉曼频移掺铒光纤激光器进行放大。我们在1980纳米处获得了108飞秒的脉冲,平均功率为3.1瓦,脉冲能量为31纳焦。据我们所知,放大器输出端的峰值功率估计约为230千瓦,这是基于任何掺杂光纤的飞秒或几皮秒放大器所获得的最高峰值功率。放大后的输出通过倍频产生990纳米处的78飞秒脉冲,平均功率为1.5瓦,脉冲能量为15纳焦。我们展示了在2微米左右以及1微米左右的宽波长可调谐性。