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Energy scaling of femtosecond and picosecond fiber oscillators beyondthe microjoule level

机译:超零秒和皮秒纤维振荡器的能量缩放超越微缀水平

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We report on the generation of microjoule level picosecond pulses from a mode-locked Yb-doped LMA fiber laser operating in the purely normal dispersion regime. The self-starting oscillator stabilized with slow relaxation semiconductor saturable absorber (SAM) emits 11 W of average power at a pulse repetition rate of 10 MHz, corresponding to a pulse energy of 1.1 IA. The laser produces a 0.4 nm narrow emission line with 310 ps output pulses. In the femtosecond operation, the oscillator stabilized with fast relaxation SAM emits 9 W of average power at a pulse repetition rate of 9.7 MHz, corresponding to a pulse energy of 927 nJ. The laser produces positively chirped output pulses of 8 ps which are compressed down to 711 fs, corresponding to megawatt peak power. To our knowledge this is the first time that mode-locked fiber oscillators can generate higher pulse energies of beyond microjoule-level at high average output power.
机译:我们报告了在纯正正常分散制度中操作的锁定YB掺杂LMA光纤激光器的微杂交水平PICOSECOND脉冲的产生。通过缓和弛豫半导体饱和吸收器(SAM)稳定的自启动振荡器以10MHz的脉冲重复率的平均功率发射11W,对应于1.11a的脉冲能量。激光产生0.4nm窄发射线,具有310ps输出脉冲。在Femtosecond操作中,用快速弛豫苏打稳定的振荡器以9.7MHz的脉冲重复率发射9W,对应于927 NJ的脉冲能量。激光器产生8 PS的正啁啾输出脉冲,其压缩至711 FS,对应于兆瓦峰值功率。据我们所知,这是第一次锁定的光纤振荡器可以在高平均输出功率下产生更高的微杂交电量的脉冲能量。

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