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Plasmonic metasurfaces:toward the mid-infrared Q-switched mode-locking operation in a simple linear-cavity laser
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作者 JUN LIU YUSHUO BAO +9 位作者 CHUNXIANG ZHANG MUHAMMAD SOHAIL ZHENHONG WANG THOMAS ALLSOP RUI MA SHUQING CHEN FENG ZHANG KANG ZHAO JIA GUO DIANYUAN FAN 《Photonics Research》 2026年第2期512-521,共10页
Plasmonic metasurfaces,featuring broadband nonlinear optical responses and exceptional light-field manipulation capabilities,facilitate the passive Q-switching and mode-locking operation of a laser resonator as a satu... Plasmonic metasurfaces,featuring broadband nonlinear optical responses and exceptional light-field manipulation capabilities,facilitate the passive Q-switching and mode-locking operation of a laser resonator as a saturable absorber(SA)and thus enable the generation of short-and ultrashort pulses.Here,for the first time,to our knowledge,we successfully fabricate a transmission-type mid-infrared plasmonic metasurface SA composed of gold nanostructures on the fluoride substrate,leveraging localized resonance enhancement.Its nonlinear optical(NLO)properties are characterized by a home-made~2.78μm pulsed Z-scan system,demonstrating a remarkable modulation depth of up to 30%.By integrating the plasmonic metasurface SA into a simple linear-cavity Er:ZBLAN fiber laser,stable Q-switched mode-locking(QML)operation is achieved with a maximum average output power of 224 mW at 2.78μm.The output exhibits a Q-switched envelope of 768 ns containing mode-locking pulses with 51.42 ps duration at the fundamental repetition rate of 24.5 MHz.This work further expands the application of plasmonic metasurface SAs to the mid-IR wavelength region,by utilizing their enhanced NLO responses and tailored spectral characteristics,enabling them as a core component for next-generation mid-IR ultrafast lasers. 展开更多
关键词 plasmonic metasurfaces fluoride substrateleveraging laser resonator Q switched mode locking mid infrared plasmonic metasurfacesfeaturing saturable absorber sa localized resonance enh
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