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气体组份和峰化电容对脉冲HF激光输出特性的影响 被引量:8

Influence of Mixture Component and Peaking Capacitor on the Performance of an UV Preionized Pulsed HF Laser
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摘要 研究了气体组份和峰化电容对紫外光预电离脉冲HF激光器性能的影响。实验发现最佳气体混合比为SF6 C2 H6 =2 0∶1,峰化电容和主放电电容的最佳比为Cp Cs =0 3,在最佳气体混合比时 ,最大激光脉冲能量和对应的总气压随充电电压的提高而增大。另外 ,激光脉冲宽度随气压的升高而减小。得到了 4 0 0mJ的能量输出 ,脉冲峰值功率为 1 5MW ,激光能量比输出达 31 7J l·atm ,最大电光转换效率约为 2 2 %。 The influence of the peaking capacitor and the pressure of mixture gas on the performance of UV preionized pulsed HF laser is investigated. There exists an optimum mixing ratio (SF6/C2H6=20:1) and an optimum capacitor ratio (CP/CS=0.3). The laser pulse width decreases as the gas pressure increases. Under the optimum mixing ratio the maximum attainable output energy and the optimal pressure increase with the increase of the charging voltage. The laser output energy reaches 400 mJ with a maximum electric efficiency about 2.2% and the specific energy 31.7 J/I&middotatm.
出处 《中国激光》 EI CAS CSCD 北大核心 2003年第1期1-4,共4页 Chinese Journal of Lasers
关键词 气体组份 输出特性 脉冲HF激光器 紫外光预电离 峰化电容 Capacitors Operations research Performance
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  • 1激光与光电子学进展,1998年,5卷,26页

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同被引文献92

  • 1柯常军,张阔海,孙科,谭荣清,吴谨,王东蕾.重复频率放电引发的脉冲HF(DF)激光器[J].红外与激光工程,2007,36(z1):304-306. 被引量:24
  • 2柯常军,万重怡,周锦文,吴谨.高峰值功率脉冲氟化氢激光器[J].激光技术,2004,28(5):480-481. 被引量:7
  • 3沙国河.强化学激光器的研究与发展[J].中国激光,1994,21(5):387-390. 被引量:4
  • 4Apollonov V V, Firsov K N. High-power non-chain HF(DF)lasers initiated by self-sustained volume discharge[A]. SPIE[C]. 1998,3574: 374-384.
  • 5Lacour B,Gagnol C, Prigent P. High average power HF/DF laser[A]. SPIE[C]. 1998,3574,334-340.
  • 6Butzykin I L,Velikanov S D, Evdokimov P A. Experimental study of pulse-periodic DF laser operation with up to 1200 Hz repetition rate and about 25W average power[A]. SPIE[C]. 2001,4184:162-165.
  • 7Borisov V P,Burrtsev V V,Velikanov S D. Electric-discharge DF laser with a pulsed energy of the order of 10 J[J]. Quantum Electron,2000, 30:225-228.
  • 8Hancock J K,Green W H. Vibrational deactivation rates of HF( v = 1) [J].J Chem Phy, 1974,59(12) : 6350-6357.
  • 9Tarasenko V F,Alekseev S D,Gubanov V P et al. Volume nanosecond high pressure discharge formed in a nonuniform electric field[A]. SPIE [C]. 2005,5777:531-534.
  • 10Polanyi J C.Vibration-rotational population inversion[J].App.Opt.Suppl.on Chemical Laser,1965,4(S1):109-127.

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