光学
多模光纤
布里渊散射
放大器
波前
材料科学
单模光纤
光纤激光器
激光线宽
激光束质量
物理
光纤
光电子学
激光器
CMOS芯片
激光束
作者
Stefan Rothe,Chun‐Wei Chen,Peyman Ahmadi,KyeoReh Lee,Kabish Wisal,Mert Ercan,Nathan Vigne,A. Douglas Stone,Hui Cao
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-10-09
卷期号:390 (6769): 173-177
标识
DOI:10.1126/science.ady2226
摘要
High-power fiber lasers are powerful tools used in science, industry, and defense. A major roadblock for further power scaling of single-frequency fiber laser amplifiers is stimulated Brillouin scattering. Efforts have been made to mitigate this nonlinear process, but these were mostly limited to single-mode or few-mode fiber amplifiers, which have good beam quality. Here, we explored a highly multimode fiber amplifier in which stimulated Brillouin scattering was greatly suppressed due to a reduction of light intensity in a large fiber core and a broadening of the Brillouin scattering spectrum by multimode excitation. By applying a spatial wavefront shaping technique to the input light of a nonlinear amplifier, the output beam was focused to a diffraction-limited spot. Our multimode fiber amplifier can operate at high power with high efficiency and narrow linewidth, which ensures high coherence. Optical wavefront shaping enables coherent control of multimode laser amplification, with potential applications in coherent beam combining, large-scale interferometry and directed energy delivery.
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