首页> 外文期刊>Applied optics >Passive Q switching of Yb:CNGS lasers by Cr4+:YAG and V3+:YAG saturable absorbers
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Passive Q switching of Yb:CNGS lasers by Cr4+:YAG and V3+:YAG saturable absorbers

机译:YB的被动Q切换:CNGS激光CR4 +:YAG和V3 +:YAG可饱和吸收器

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摘要

Trigonal langasite-type ordered silicate crystal Yb:Ca3NbGa3Si2O14 (Yb:CNGS) is a promising material for efficient similar to 1 mu m lasers. We report on the first passively Q-switched Yb:CNGS laser using Cr4+:YAG and V3+:YAG saturable absorbers (SAs) with a 976 nm volume-Bragg-grating-stabilized diode as a pump source. The laser crystal was a c cut 3 at.% Yb:CNGS grown by the Czochralski method. It was placed in a compact microchip-type laser cavity. With a Cr4+:YAG SA, very stable 62.2 mu J/4.4 ns pulses were achieved at a repetition rate of 22.5 kHz. The average output power was 1.40 W at 1015.3 nm, corresponding to a Q switching conversion efficiency of 90%. With the V3+:YAG SA, the pulse characteristics were 13.3 mu J/11.1 ns at a higher repetition rate of 68.4 kHz. The performance of the Yb:CNGS/Cr4+:YAG was numerically modeled showing a good agreement with the experiment. (C)2018 Optical Society of America
机译:Trigonal Langasite型有序硅酸盐晶体Yb:Ca3NBGA3Si2O14(YB:CNG)是一种有效的材料,用于高效与1 mu m激光器。 我们使用CR4 +:YAG和V3 +:YAG可饱和吸收剂(SAS)报告第一被动Q开关的YB:CNGS激光器,其具有976nm体积 - 布拉格光栅稳定二极管作为泵源。 激光晶体是C切割3.%YB:CNG被CZOCHRALSKI方法生长。 它被置于紧凑的微芯片式激光腔中。 使用CR4 +:YAG SA,以22.5kHz的重复率实现非常稳定的62.2μJ/ 4.4 NS脉冲。 平均输出功率为1.40W,1015.3nm,对应于Q开关转换效率为90%。 使用V3 +:YAG SA,脉冲特性为13.3μJ/ 11.1ns,以68.4 kHz的更高重复率。 YB的性能:CNGS / CR4 +:YAG在数模上建模显示与实验良好的协议。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第28期|共6页
  • 作者单位

    Univ Rovira &

    Virgil Dept Quim Fis &

    Inorgan Fis Cristallog Mat &

    Nanomat FiCMA FiCNA EMaS Campus Sescelades E-43007 Tarragona Spain;

    ITMO Univ 49 Kronverkskiy Pr St Petersburg 197101 Russia;

    Univ Rovira &

    Virgil Dept Quim Fis &

    Inorgan Fis Cristallog Mat &

    Nanomat FiCMA FiCNA EMaS Campus Sescelades E-43007 Tarragona Spain;

    Czech Acad Sci Inst Phys HiLASE Ctr Radnici 828 Dolni Brezany 25241 Czech Republic;

    Shandong Univ State Key Lab Crystal Mat Jinan 250100 Shandong Peoples R China;

    Shandong Univ State Key Lab Crystal Mat Jinan 250100 Shandong Peoples R China;

    Belarusian Natl Tech Univ COMT 65-17 Nezavisimosti Ave Minsk 220013 BELARUS;

    Czech Acad Sci Inst Phys HiLASE Ctr Radnici 828 Dolni Brezany 25241 Czech Republic;

    Czech Acad Sci Inst Phys HiLASE Ctr Radnici 828 Dolni Brezany 25241 Czech Republic;

    Max Born Inst Nonlinear Opt &

    Short Pulse Spect Max Bom Str 2a D-12489 Berlin Germany;

    Max Born Inst Nonlinear Opt &

    Short Pulse Spect Max Bom Str 2a D-12489 Berlin Germany;

    Shandong Univ State Key Lab Crystal Mat Jinan 250100 Shandong Peoples R China;

    Univ Rovira &

    Virgil Dept Quim Fis &

    Inorgan Fis Cristallog Mat &

    Nanomat FiCMA FiCNA EMaS Campus Sescelades E-43007 Tarragona Spain;

    Univ Rovira &

    Virgil Dept Quim Fis &

    Inorgan Fis Cristallog Mat &

    Nanomat FiCMA FiCNA EMaS Campus Sescelades E-43007 Tarragona Spain;

    Univ Rovira &

    Virgil Dept Quim Fis &

    Inorgan Fis Cristallog Mat &

    Nanomat FiCMA FiCNA EMaS Campus Sescelades E-43007 Tarragona Spain;

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  • 正文语种 eng
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