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首页> 外文期刊>Fiber and Integrated Optics >Experimental and Theoretical Study of the Generation and Non-Linear Conversion of Picosecond Bursts from an Amplified Ytterbium-Doped Fiber Laser System
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Experimental and Theoretical Study of the Generation and Non-Linear Conversion of Picosecond Bursts from an Amplified Ytterbium-Doped Fiber Laser System

机译:掺Y光纤激光系统产生皮秒脉冲的产生和非线性转换的实验和理论研究

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摘要

This article presents an experimental and theoretical study of the generation of picosecond bursts by a non-polarization-maintaining ytterbium-doped fiber master oscillator fiber amplifier system. The peak power and pulse energy of the burst are higher than 45 kW and 350 nJ at 700 kHz, respectively. The master oscillator fiber amplifier was used to generate 3 W of green and 200 mW of UV light with conversion efficiencies of 16% and 8%, respectively. The enhancement of conversion efficiency by the pulse burst compared with regular pulses was analyzed and attributed to dynamically saturated gain of the pump-power-limited fiber amplifier
机译:本文介绍了通过非偏振保持掺杂光纤主振荡器光纤放大器系统产生皮秒脉冲的实验和理论研究。突发的峰值功率和脉冲能量在700 kHz时分别高于45 kW和350 nJ。主振荡器光纤放大器用于产生3 W的绿色光和200 mW的UV光,转换效率分别为16%和8%。分析了与常规脉冲相比,脉冲猝发提高了转换效率,这归因于泵浦功率受限光纤放大器的动态饱和增益

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