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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
Journal article   Peer reviewed

Experimental and theoretical study of the generation and non-linear conversion of picosecond bursts from an amplified ytterbium-doped fiber laser system

Chih-Hsuan Lin, Yi-Jing You, Chia-Chun Chung, Alexey Zaytsev, Feng-Hua Tsai, Chi-Luen Wang and Ci-Ling Pan
Fiber and Integrated Optics, Vol.33(1-2), pp.68-84
02/01/2014

Abstract

Fiber amplifier Frequency conversion Pulse bursts Ultrafast optics
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. Copyright © Taylor & Francis Group, LLC.

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