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High-power mid-infrared femtosecond master oscillator power amplifier Er:ZBLAN fiber laser system
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作者 Linpeng Yu Jinhui Liang +9 位作者 Qinghui Zeng Jiacheng Wang Xing Luo Jinzhang Wang Peiguang Yan fanlong dong Xing Liu Qitao Lü Chunyu Guo Shuangchen Ruan 《High Power Laser Science and Engineering》 SCIE EI CAS CSCD 2023年第4期85-90,共6页
High-power femtosecond mid-infrared(MIR)lasers are of vast importance to both fundamental research and applications.We report a high-power femtosecond master oscillator power amplifier laser system consisting of a sin... High-power femtosecond mid-infrared(MIR)lasers are of vast importance to both fundamental research and applications.We report a high-power femtosecond master oscillator power amplifier laser system consisting of a singlemode Er:ZBLAN fiber mode-locked oscillator and pre-amplifier followed by a large-mode-area Er:ZBLAN fiber main amplifier.The main amplifier is actively cooled and bidirectionally pumped at 976 nm,generating a slope efficiency of 26.9%.Pulses of 8.12 W,148 fs at 2.8μm with a repetition rate of 69.65 MHz are achieved.To the best of our knowledge,this is the highest average power ever achieved from a femtosecond MIR laser source.Such a compact ultrafast laser system is promising for a wide range of applications,such as medical surgery and material processing. 展开更多
关键词 femtosecond fiber laser fluoride fiber amplifier master oscillator power amplifier MID-INFRARED
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Generation of single solitons tunable from 3 to3.8μm in cascaded Er^(3+)-doped and Dy^(3+)-doped fluoride fiber amplifiers
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作者 LINPENG YU JINHUI LIANG +9 位作者 SHITING HUANG JINZHANG WANG JIACHEN WANG XING LUO PEIGUANG YAN fanlong dong XING LIU QITAO LUE CHUNYU GUO SHUANGCHEN RUAN 《Photonics Research》 SCIE EI CAS CSCD 2022年第9期2140-2146,共7页
High-power tunable femtosecond mid-infrared(MIR)pulses are of great interest for many scientific and industrial applications.Here we demonstrate a compact fluoride-fiber-based system that generates single solitons tun... High-power tunable femtosecond mid-infrared(MIR)pulses are of great interest for many scientific and industrial applications.Here we demonstrate a compact fluoride-fiber-based system that generates single solitons tunable from 3 to 3.8μm.The system is composed of an Er:ZBLAN fiber oscillator and amplifier followed by a fusion-spliced Dy:ZBLAN fiber amplifier.The Er:ZBLAN fiber amplifier acts as a power booster as well as a frequency shifter to generate Raman solitons up to 3μm.The Dy:ZBLAN fiber amplifier transfers the energy from the residual 2.8μm radiation into the Raman solitons using an in-band pumping scheme,and further extends the wavelength up to 3.8μm.Common residual pump radiation and secondary solitons accompanying the soliton self-frequency shift(SSFS)are recycled to amplify Raman solitons,consequently displaying a higher output power and pulse energy,a wider shifting range,and an excellent spectral purity.Stable 252 fs pulses at3.8μm with a record average power of 1.6 W and a pulse energy of 23 n J are generated.This work provides an effective way to develop high-power widely tunable ultrafast single-soliton MIR laser sources,and this method can facilitate the design of other SSFS-based laser systems for single-soliton generation. 展开更多
关键词 fiber TUNABLE AMPLIFIER
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