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Suppression of FM-to-AM conversion in a broadband Nd:glass regenerative amplifier with an intracavity birefringent filter

机译:抑制宽带和:玻璃再生放大器的FM-TO-AM转换,具有内部双折射过滤器

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摘要

In order to suppress the frequency modulation to amplitude modulation (FM-to-AM) conversion induced by a Nd:glass regenerative laser amplifier, a birefringent quartz crystal was designed by theoretical simulation and inserted into the regenerative amplifier. A broadband Nd:glass regenerative laser amplifier with a flattop region of similar to 3.7 nm in the gain spectrum was developed. An all-fiber front-end system was used to generate a 2 ns shaped pulse with a spectral width of similar to 0.5 nm, which was broadened by a two-stage phase modulator. Then, the laser pulse was amplified by a spectral-broadened regenerative amplifier. The amplified output temporal waveform modulation depth was reduced from a maximum of 47.7% to 17.3% at a center wavelength of 1053.328 nm. The experimental results show that the FM-to-AM conversion can be effectively suppressed in the spectral-broadened Nd:glass regenerative laser amplifier, which indicates that it has potential application as a preamplifier of large-scale laser facilities. (C) 2019 Optical Society of America
机译:为了抑制由ND:玻璃再生激光放大器引起的幅度调制(FM-TO-AM)转换的频率调节(FM-TO-AM)转换,通过理论模拟设计了双折射石英晶系,并插入再生放大器中。开发了宽带ND:玻璃再生激光放大器,其具有类似于增益光谱的扁平区域的扁平区域。全光纤前端系统用于产生2NS形脉冲,其光谱宽度类似于0.5nm,由两级相位调制器宽。然后,通过光谱扩大的再生放大器放大激光脉冲。放大的输出时间波形调制深度在1053.328nm的中心波长下最大减小为47.7%至17.3%。实验结果表明,在光谱扩大的Nd:玻璃再生激光放大器中可以有效地抑制FM-To-AM转换,这表明它具有作为大规模激光设施的前置放大器的潜在应用。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第5期|共10页
  • 作者单位

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

    Chinese Acad Sci Natl Lab High Power Laser &

    Phys Shanghai Inst Opt &

    Fine Mech Shanghai 201800 Peoples R China;

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  • 正文语种 eng
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