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Demonstration of multi-Watt all-fiber superfluorescent source operating near 980 nm
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作者 任彦锟 曹涧秋 +4 位作者 应汉辕 陈恒 潘志勇 杜少军 陈金宝 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第3期216-219,共4页
The superfluorescent Yb-doped fiber source operating near 980 nm is studied. The design requirement is theoretically discussed aiming to suppress the amplified spontaneous emission around 1030 nm in the 980-rim superf... The superfluorescent Yb-doped fiber source operating near 980 nm is studied. The design requirement is theoretically discussed aiming to suppress the amplified spontaneous emission around 1030 nm in the 980-rim superfluorescent fiber source. Based on the theoretical study, a multi-Watt, all-fiber, bi-directional, pumped, superfluorescent source operating near 980 nm is designed and experimentally demonstrated for the first time, to the best of our knowledge. The recorded 8.38-W combined output power is obtained with a 3-dB bandwidth about 3.5 nm. The power scaling of the 980-nm superlfuorescent fiber source is limited by the parasitic laser oscillation. 展开更多
关键词 superfluorescence fiber source amplified spontaneous emission ytterbium-doped fiber
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Experimental investigation of the stimulated Raman scattering effect in high-power nanosecond superfluorescent fiber source
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作者 Chaoyu Ning Shuzhen Zou +8 位作者 Haijuan Yu Jiexi Zuo Xuechun Chen Shuang Xu Shifei Han Xinyao Li Wenjuan Wu Chaojian He Xuechun Lin 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2023年第6期229-238,共10页
In this work,we experimentally investigate the dependence of the stimulated Raman scattering(SRS)effect on the seed linewidth of a high-power nanosecond superfluorescent fiber source(ns-SFS).The results reveal that th... In this work,we experimentally investigate the dependence of the stimulated Raman scattering(SRS)effect on the seed linewidth of a high-power nanosecond superfluorescent fiber source(ns-SFS).The results reveal that the SRS in the ns-SFS amplifier is significantly influenced by the full width at half maximum(FWHM)of the ns-SFS seed,and there is an optimal FWHM linewidth of 2 nm to achieve the lowest SRS in our case.The first-order SRS power ratio increases rapidly when the seed’s linewidth deviates from the optimal FWHM linewidth.By power scaling the ns-SFS seed with the optimal FWHM linewidth,a narrowband all-fiberized ns-SFS amplifier is achieved with a maximum average power of 602 W,pulse energy of 24.1 mJ and corresponding peak power of 422.5 kW.This is the highest average power and pulse energy achieved for all-fiberized ns-SFS amplifiers to the best of our knowledge. 展开更多
关键词 fiber amplifier high power nanosecond superfluorescent fiber source stimulated Raman scattering effect
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2-kW-level superfluorescent fiber source with flexible wavelength and linewidth tunable characteristics 被引量:3
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作者 Jun Ye Chenchen Fan +3 位作者 Jiangming Xu Hu Xiao Jinyong Leng Pu Zhou 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第4期93-102,共10页
The superfluorescent fiber source(SFS)with tunable optical spectrum has shown great application potential in the sensing,imaging,and spectral combination.Here,we demonstrate for the first time a 2-kW-level wavelength ... The superfluorescent fiber source(SFS)with tunable optical spectrum has shown great application potential in the sensing,imaging,and spectral combination.Here,we demonstrate for the first time a 2-kW-level wavelength and linewidth tunable SFS.Based on a flexible filtered SFS seed and three stages of fiber amplifiers,the output power can be scaled from the milliwatt level to about 2 kW,with a wavelength tuning range of 1068–1092 nm and a linewidth tuning range of 2.5–9.7 nm.Moreover,a numerical simulation is conducted based on the generalized nonlinear Schr?dinger equation,and the results reveal that the wavelength tuning range is limited by the decrease of seed power and the growth of amplified spontaneous emission,whereas the linewidth tuning range is determined by the gain competition and nonlinear Kerr effects.The developed wavelength and linewidth tunable SFS may be applied to scientific research and industrial processing. 展开更多
关键词 fiber amplifiers high power superfluorescent fiber source tunable lasers
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High Stability Multi-Wavelength Source by Using Synchronized Etalon Filter in Superfluorescent Fiber Source
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作者 Wencai Huang, Jianping Xie, Hai Ming Department of Physics, University of Science and Technology of China, Hefei, P.R.China 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期387-388,共2页
We demonstrate a new technique to generate a high stability multi-wavelength fiber source by inserting a synchronized etalon filter in superfluorescent fiber source. Multi-wavelength source can easily be obtained over... We demonstrate a new technique to generate a high stability multi-wavelength fiber source by inserting a synchronized etalon filter in superfluorescent fiber source. Multi-wavelength source can easily be obtained over the EDF gain region with the proposed schedule. By partially feedback diffracted spontaneous emission into erbium doped fiber medium, greater output power, extinction ration and narrower linewidth for each channel than that simply using the spectrum slicing technique is easy obtained. Stab... 展开更多
关键词 High Stability Multi-Wavelength Source by Using Synchronized Etalon Filter in Superfluorescent fiber Source for be it et WDM in by
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