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Generation of picosecond pulses with 150 W of average and 0.92 MW of peak power from an Yb-doped tapered fiber MOPA

机译:掺Yb的锥形光纤MOPA产生平均皮秒功率为150 W,峰值功率为0.92 MW的皮秒脉冲

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In this paper, we demonstrate possibility of simultaneous achievement of high peak and high average power in picosecond pulses using a monolithic amplifier based on a long Yb-doped tapered fiber. Due to a very high pump absorption (~ 25 dB/m at 976 nm) in the realized 2.4 m long tapered fiber most of the pump is absorbed near the thick tapered fiber end and a very small fraction of pump power reaches thin fiber end. As a result, signal passes through the thin part of the tapered fiber without an amplification and exhibits fast growth only near the output tapered fiber end, where a mode field diameter is large (35 nm at 1064 nm for 46 nm output core diameter), so that pulses can be amplified to a high peak power. Moreover, only a negligible fraction of pump radiation leaks at the conic part of the tapered fiber, because its most part was absorbed in the thick tapered fiber part. Thus a safe operation without polymer burning at a leakage point is possible up to a very high pump power. The developed tapered fiber was used in a final amplification stage of the all-fiber pulsed laser system, which allowed us to amplify 8.3 ps pulses with repetition rate of 18.4 MHz and central wavelength of 1064 nm to 150 W of average power and 0.92 MW peak power. The average power level was limited only by available pump power (230 W): no signs of transverse mode instability effects were observed.
机译:在本文中,我们演示了使用基于长Yb掺杂的锥形光纤的单片放大器同时实现皮秒脉冲中的高峰值和高平均功率的可能性。由于在已实现的2.4 m长锥形光纤中有非常高的泵浦吸收(在976 nm处约为25 dB / m),因此大部分泵浦都在较粗的锥形光纤末端附近被吸收,只有很小一部分的泵浦功率到达了细光纤末端。结果,信号通过锥形光纤的薄部分而没有放大,并且仅在输出场锥形光纤末端(模场直径较大(在1064 nm处为35 nm对于46 nm输出纤芯直径)附近)显示出快速增长,这样就可以将脉冲放大到很高的峰值功率。而且,在细纤维的圆锥部分,只有很少一部分泵浦辐射泄漏,因为它的大部分被吸收在较粗的细纤维部分。因此,在非常高的泵浦功率下,可以安全运行而不会在泄漏点处燃烧聚合物。开发的锥形光纤用于全光纤脉冲激光系统的最终放大阶段,这使我们能够放大8.3 ps脉冲,重复频率为18.4 MHz,中心波长为1064 nm,平均功率为150 W,峰值功率为0.92 MW。力量。平均功率水平仅受可用泵浦功率(230 W)的限制:未观察到横向模式不稳定性影响的迹象。

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