Saraceno C J, Heckl O H, Baer C R E, Südmeyer T, Keller U
Department of Physics, Institute of Quantum Electronics, ETH Zurich, Zurich, Switzerland.
Opt Express. 2011 Jan 17;19(2):1395-407. doi: 10.1364/OE.19.001395.
We report on two pulse compressors for a high-power thin disk laser oscillator using rod-type fiber amplifiers. Both systems are seeded by a standard SESAM modelocked thin disk laser that delivers 16 W of average power at a repetition rate of 10.6 MHz with a pulse energy of 1.5 μJ and a pulse duration of 1 ps. We discuss two results with different fiber parameters with different trade-offs in pulse duration, average power, damage and complexity. The first amplifier setup consists of a Yb-doped fiber amplifier with a 2200 μm2 core area and a length of 55 cm, resulting in a compressed average power of 55 W with 98-fs pulses at a repetition rate of 10.6 MHz. The second system uses a shorter 36-cm fiber with a larger core area of 4500 μm2. In a stretcher-free configuration we obtained 34 W of compressed average power and 65-fs pulses. In both cases peak powers of > 30 MW were demonstrated at several μJ pulse energies. The power scaling limitations due to damage and self-focusing are discussed.
我们报告了两种用于采用棒状光纤放大器的高功率薄片激光振荡器的脉冲压缩器。这两个系统均由一个标准的SESAM锁模薄片激光器注入种子光,该激光器在10.6 MHz的重复频率下输出16 W的平均功率,脉冲能量为1.5 μJ,脉冲持续时间为1 ps。我们讨论了两种具有不同光纤参数的结果,它们在脉冲持续时间、平均功率、损伤和复杂性方面存在不同的权衡。第一种放大器设置由一个纤芯面积为2200 μm²、长度为55 cm的掺镱光纤放大器组成,在10.6 MHz的重复频率下产生了55 W的压缩平均功率和98 fs的脉冲。第二个系统使用了一根更短的36 cm光纤,其纤芯面积更大,为4500 μm²。在无展宽器配置下,我们获得了34 W的压缩平均功率和65 fs的脉冲。在这两种情况下,在几个μJ的脉冲能量下均展示出了大于30 MW的峰值功率。还讨论了由损伤和自聚焦导致的功率缩放限制。