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Multi-stage ytterbium fiber-amplifier seeded by a gain-switched laser diode

机译:增益开关激光二极管注入的多级光纤放大器

摘要

We demonstrated all-fiber amplification of 11 ps pulses from a gain-switched laser diode at 1064 nm. The diode was driven at a repetition rate of 40 MHz and delivered 13 µW of fiber-coupled average output power. For the low output pulse energy of 325 fJ we have designed a multi-stage core pumped pre-amplifier in order to keep the contribution of undesired amplified spontaneous emission as low as possible. By using a novel time-domain approach for determining the power spectral density ratio (PSD) of signal to noise, we identified the optimal working point for our pre-amplifier. After the pre-amplifier we reduced the 40 MHz repetition rate to 1 MHz using a fiber coupled pulse-picker. The final amplification was done with a cladding pumped Yb-doped large mode area fiber and a subsequent Yb-doped rod-type fiber. With our setup we reached a total gain of 73 dB, resulting in pulse energies of >5.6 µJ and peak powers of >0.5 MW. The average PSD-ratio of signal to noise we determined to be 18/1 at the output of the final amplification stage.
机译:我们展示了来自1064 nm增益切换激光二极管的11 ps脉冲的全光纤放大。二极管以40 MHz的重复频率驱动,并提供13 µW的光纤耦合平均输出功率。对于325 fJ的低输出脉冲能量,我们设计了一个多级芯泵浦前置放大器,以使不希望的放大自发辐射的贡献尽可能低。通过使用一种新颖的时域方法确定信噪比的功率谱密度比(PSD),我们确定了前置放大器的最佳工作点。在前置放大器之后,我们使用光纤耦合脉冲选择器将40 MHz的重复频率降低到1 MHz。最终的放大是用包层泵浦掺Yb的大模面积光纤和随后掺Yb的棒型光纤完成的。通过我们的设置,我们达到了73 dB的总增益,从而产生了大于5.6 µJ的脉冲能量和大于0.5 MW的峰值功率。在最终放大级的输出处,我们确定信号与噪声的平均PSD比为18/1。

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