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Gain saturation characteristics of traveling-wave semiconductor laser amplifiers in short optical pulse amplification

机译:短光脉冲放大中行波半导体激光放大器的增益饱和特性

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The gain saturation characteristics of traveling-wave semiconductor laser amplifiers (TWAs) are theoretically and experimentally investigated. In the amplification of an isolated pulse whose repetition period is short compared to the carrier lifetime, the gain saturation is related through the carrier lifetime to the gain saturation in CW amplification. When the output pulse energy is smaller than the saturation energy, short optical pulses can be amplified without pulse shape distortion, whereas high-energy pulses suffer from pulse shape distortion due to the temporal gain variation during the pulse radiation. FWHM pulse duration variation in amplification by TWAs depends on the input pulse shape. The pulse energy gain saturation was experimentally confirmed to be independent of pulse durations and to be determined only by the pulse energy. In extremely-high-repetition-rate pulse amplification, the saturation of the pulse energy gain is determined by the average signal power.
机译:从理论上和实验上研究了行波半导体激光放大器(TWA)的增益饱和特性。在重复周期比载波寿命短的隔离脉冲的放大中,增益饱和度通过载波寿命与CW放大中的增益饱和度相关。当输出脉冲能量小于饱和能量时,短的光脉冲可以被放大而没有脉冲形状失真,而高能量脉冲由于脉冲辐射期间的时间增益变化而遭受脉冲形状失真。通过TWA放大的FWHM脉冲持续时间变化取决于输入脉冲形状。实验证明脉冲能量增益饱和度与脉冲持续时间无关,并且仅由脉冲能量确定。在极高的重复频率脉冲放大中,脉冲能量增益的饱和度由平均信号功率决定。

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