High Power Laser Science and Engineering, Volume. 7, Issue 3, 03000e41(2019)
Amplification of 200-ps high-intensity laser pulses via frequency matching stimulated Brillouin scattering
Fig. 1. Experimental setup. (a) The 200-ps Stokes pulse and 5-ns pump pulse are generated at the front end. (b) The Stokes pulse is frequency-shifted by an amount determined by the chosen SBS medium. (c) Block diagram of the experimental setup. (d) Energy is transferred from the pump pulse to the Stokes pulse in an SBS cell.
Fig. 2. Experimental results. (a) Output Stokes intensity varies with the input intensity; input Stokes and pump intensities are the same. (b) Probability distribution of the output pulse width when the output Stokes pulse widths are in the range 150–200 ps. (c) Temporal intensities of the Stokes and pump pulses for input pump intensity of
Fig. 3. Theoretical analysis of Brillouin amplification within nonlinear absorption: comparison between Brillouin amplification with and without considering nonlinear absorption.
Fig. 5. Temporal intensities of the Stokes and pump pulses of the phase-modulated laser.
Fig. 6. (a) Variation of the interaction length with the crossing angle at
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Hang Yuan, Yulei Wang, Qiang Yuan, Dongxia Hu, Can Cui, Zhaohong Liu, Sensen Li, Yi Chen, Feng Jing, Zhiwei Lü. Amplification of 200-ps high-intensity laser pulses via frequency matching stimulated Brillouin scattering[J]. High Power Laser Science and Engineering, 2019, 7(3): 03000e41
Category: Research Articles
Received: Mar. 3, 2019
Accepted: Jun. 4, 2019
Posted: Jun. 11, 2019
Published Online: Aug. 8, 2019
The Author Email: Yulei Wang (wyl@hit.edu.cn), Zhiwei Lü (zw_lu@sohu.com)