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反射镜双程放大对类氖锗软X射线激光的输出影响研究

安红海 王琛 方智恒 熊俊 孙今人 王伟 傅思祖 乔秀梅 郑无敌 张国平

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反射镜双程放大对类氖锗软X射线激光的输出影响研究

安红海, 王琛, 方智恒, 熊俊, 孙今人, 王伟, 傅思祖, 乔秀梅, 郑无敌, 张国平

Output intensity of Ne-like Ge soft X-ray laser with double-pass amplification

An Hong-Hai, Wang Chen, Fang Zhi-Heng, Xiong Jun, Sun Jin-Ren, Wang Wei, Fu Si-Zu, Qiao Xiu-Mei, Zheng Wu-Di, Zhang Guo-Ping
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  • 纳秒量级激光驱动的类氖锗软X射线激光具有出光稳定和输出强度大等优点,在诸多领域拥有很好的应用价值. 研究了通过在光路中增加一块多层膜反射镜实现双程放大对出光特性的影响. 通过估算和实验,证实了增加反射镜双程放大确实能够提高类氖锗软X射线激光的输出强度,对于24mm的双程放大长度,总输出强度会增加约2.3倍. 但同时这种模式也带来了光束质量的下降,对应用研究并非完全有益.
    Ne-like germanium soft X-ray lasers driven by nanosecond laser have very good applications, due to their stable output and strong intensity. The double-pass amplification mode, with a multi-layer reflective mirror added is investigated. The estimate and the experiment show that the output intensity of Ne-like germanium soft X-ray laser is enhanced by double-pass amplification. For 24mm length of double-pass amplification, the total output intensity is enhanced by 2.3 times as against that with no mirror added. Meanwhile, this mode results in quality decline of soft X-ray laser beam. So this mode is not entirely beneficial to the applied study.
    • 基金项目: 国家高技术研究发展计划(批准号:2009AA8041014)资助的课题.
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    Trebes J E, Brown S B, Campbell E M, Matthews D L, Nilson D G, Stone G F, Whelan D A 1987 Science 238 517

    [2]
    [3]

    DiCicco D S, Kim D, Rosser R, Suckewer S 1992 Opt. Lett. 17 157

    [4]
    [5]

    Da Silva L B, Barbee T W, Jr, Cauble R, Celliers P, Ciarlo D, Libby S, London R A, Matthews D, Mrowka S, Moreno J C, Ress D, Trebes J E, Wan A S, Weber F 1995 Phys. Rev. Lett. 74 3991

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    [8]
    [9]

    Benware B R, Ozols A, Rocca J J, Artioukov I A, Kondratenko V V, Vinogradov A V 1999 Opt. Lett. 24 1714

    [10]

    Smith R F, Dunn J, Nilsen J, Shlyaptsev V N, Moon S, Filevich J, Rocca J J, Marconi M C, Hunter J R, Barbee T W, Jr. 2002 Phys. Rev. Lett. 89 065004

    [11]
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    Wang C, Wang W, Sun J R, Fang Z H, Wu J, Fu S Z, Ma W X, Gu Y, Wang S J, Zhang G P, Zheng W D, Zhang T X, Peng H M, Shao P, Yi K, Lin Z Q, Wang Z S, Wang H C, Zhou B, Chen L Y, Jin C S 2005 Acta Phys.Sin. 54 202 (in Chinese) [王 琛、王 伟、孙今人、方智恒、吴 江、傅思祖、马伟新、顾 援、王世绩、张国平、郑无敌、张覃鑫、彭惠民、邵 平、易 葵、林尊琪、王占山、王洪昌、周 斌、陈玲燕、金春水 2005 物理学报 54 202]

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    [18]

    Purvis M, Grava J, Filevich J, Marconi M C, Dunn J, Moon S J, Shlyaptsev V N, Jankowska E, Rocca J J 2007 Phys. Rev. E 76 046402

    [19]
    [20]

    Zheng W D, Zhang G P, Wang C, Sun J R, Fang Z H, Gu Y, Fu S Z 2007 Acta Phys.Sin. 56 3984 (in Chinese)[郑无敌、张国平、王 琛、孙今人、方智恒、顾 援、傅思祖 2007 物理学报 56 3984]

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    Zhang G P, Zhang T X, Zheng W D, Qiao X M 2007 Chin. Phys. 16 2433

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    [29]

    Brewer C A, Brizuela F, Wachulak P, Martz D H, Chao W L, Anderson E H, Attwood D T, Vinogradov A V, Artyukov I A, Ponomareko A G, Kondratenko V V, Marconi M C, Rocca J J, Menoni C S 2008 Opt. Lett. 33 518

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    [31]
    [32]
    [33]

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    Koch J A, MacGowan B J, DaSilva L B, Matthews D L, Underwood J H, Batson P J, Mrowka S 1992 Phys.Rev.Lett. 68 3291

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    DaSilva D L, MacGowan B J, Mrowka S, Koch J A, London R A, Matthews D L, Underwood J H 1993 Opt.Lett. 18 1174

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    Wang S J, Gu Y, Zhou G L, Ni Y L, Yu S Y, Fu S Z, Mao C S, Tao Z C, Chen W N, Lin Z Q, Fan D Y, Zhang G P, Sheng J T, Yang M L, Zhang T X, Shao Y F, Peng H M, He X T, Yu M 1991 Chin.Phys.Lett. 8 618

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    [42]
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    [44]

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出版历程
  • 收稿日期:  2010-09-04
  • 修回日期:  2010-12-22
  • 刊出日期:  2011-05-05

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