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Multi-stage Er-doped fiber amplifier for gain-switched laser diodes

机译:增益切换激光二极管的多级掺switch光纤放大器

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We present a compact laser source delivering picosecond pulses at 1 MHz repetition rate based on the fiber amplification of a gain-switched laser diode at 1550 nm, with a FWHM spectral bandwidth of 0.06 nm and 116 mW average output power. Gain-switched semiconductor laser diodes are very attractive sources [1] of picosecond pulses because they are compact, stable and provide tunable repetition rates from pulse-on-demand up to hundreds of megahertz. They are a good alternative to picosecond mode-locked lasers, which are more expensive, less robust and require complex long-cavity designs or pulse pickers to reach repetition rates below 10 MHz. The pulse energy of gain-switched laser diodes, however, is typically only in the order of a few tens of picojoules. As a consequence, the pulses need to be amplified by several tens of dBs, in order to reach energy levels in the microjoule range nowadays available from mode-locked lasers.
机译:我们基于1550 nm增益开关激光二极管的光纤放大,以0.06 nm的FWHM光谱带宽和116 mW的平均输出功率,以1 MHz的重复频率提供皮秒脉冲的紧凑型激光源。增益开关半导体激光二极管是皮秒脉冲的极具吸引力的来源[1],因为它们结构紧凑,稳定,并提供从按需脉冲到数百兆赫兹的可调重复率。它们是皮秒锁模激光器的好选择,皮秒锁模激光器更昂贵,更不牢固,并且需要复杂的长腔设计或脉冲拾取器才能达到低于10 MHz的重复频率。然而,增益开关激光二极管的脉冲能量通常仅为几十皮焦耳的数量级。结果,为了达到当今锁模激光器可获得的微焦耳范围内的能量水平,需要将脉冲放大几十个dB。

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