Characteristics of a pulse-periodic CO2 laser for applications in the field of laser-produced plasma

被引:6
|
作者
Satov, Yu. A. [1 ]
Shumshurov, A. V. [1 ]
Vasilyev, A. A. [1 ]
Balabaev, A. N. [1 ]
Losev, A. A. [1 ,2 ]
Khrisanov, I. A. [1 ]
Rerikh, V. K. [3 ]
机构
[1] Natl Res Ctr Kurchatov Inst, Alikhanov Inst Theoret & Expt Phys, Ul Bolshaya Cheremushkinskaya 25, Moscow 117218, Russia
[2] Natl Res Nucl Univ Moscow Engn Phys Inst MEPhI, Kashirskoe Sh 31, Moscow 115409, Russia
[3] Troitsk Inst Innovat & Fus Res, Ul Pushkovykh 12, Troitsk 142190, Moscow Oblast, Russia
关键词
TEA CO2-LASER; POWER; OPERATION; GENERATOR;
D O I
10.1134/S0020441216020251
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The design of a pulse-periodic DD2 laser oscillator that operates at a high level of the specific energy deposition into a self-sustained discharge is described. The laser is intended for generating pulses with a high-density radiation flux in a laser-plasma generator of multiply charged ions at the Institute of Theoretical and Experimental Physics (ITEP). The results of investigations of the spatiotemporal and energy characteristics of laser output radiation in a wide range of the discharge excitation level and the mixture composition are presented. The optimal conditions are determined under which the oscillator provides an output energy of > 10 J in a pulse with a duration of 28 ns and a record specific peak radiation power of 190 MW per liter of the active volume of a CO2: N-2: He mixture. The high quality of the spatial characteristics was confirmed in measurements of the radial energy-density distribution in the far-field zone, whose characteristic size is close to the diffraction limit.
引用
收藏
页码:412 / 419
页数:8
相关论文
共 50 条
  • [1] Characteristics of a pulse–periodic CO2 laser for applications in the field of laser-produced plasma
    Yu. A. Satov
    A. V. Shumshurov
    A. A. Vasilyev
    A. N. Balabaev
    A. A. Losev
    I. A. Khrisanov
    V. K. Rerikh
    [J]. Instruments and Experimental Techniques, 2016, 59 : 412 - 419
  • [2] INITIATION OF A PULSED HF LASER WITH A CO2 LASER-PRODUCED PLASMA
    WOOD, OR
    SILFVAST, WT
    [J]. IEEE JOURNAL OF QUANTUM ELECTRONICS, 1979, 15 (12) : 1323 - 1325
  • [3] COMPACT PULSE-PERIODIC CO2-LASER
    ARZUOV, MI
    VARTAPETOV, SK
    KARASYOV, ME
    KONOV, VI
    KOSTIN, VV
    [J]. KVANTOVAYA ELEKTRONIKA, 1979, 6 (03): : 597 - 599
  • [4] CO2 LASER-PRODUCED PLASMAS IN A MAGNETIC-FIELD
    HALVERSO.W
    CHASE, CE
    COHN, DR
    LAX, B
    [J]. IEEE JOURNAL OF QUANTUM ELECTRONICS, 1972, QE 8 (06) : 552 - &
  • [5] REHEATING OF A LASER-PRODUCED PLASMA BY A 2ND PULSE LASER
    UEBBING, J
    BRUST, J
    SDORRA, W
    LEIS, F
    NIEMAX, K
    [J]. APPLIED SPECTROSCOPY, 1991, 45 (09) : 1419 - 1423
  • [6] EFFECT OF ELECTRODE EMISSION PROPERTIES ON PULSE-PERIODIC CO2-LASER CHARACTERISTICS
    MESYATS, GA
    OSIPOV, VV
    PETROV, AN
    TELNOV, VA
    FROLOV, VN
    KHAMIDULIN, GM
    [J]. ZHURNAL TEKHNICHESKOI FIZIKI, 1990, 60 (04): : 143 - 146
  • [7] Properties of oxide nanopowders prepared by target evaporation with a pulse-periodic co2 laser
    Yu. A. Kotov
    V. V. Osipov
    M. G. Ivanov
    O. M. Samatov
    V. V. Platonov
    E. I. Azarkevich
    A. M. Murzakaev
    A. I. Medvedev
    [J]. Technical Physics, 2002, 47 : 1420 - 1426
  • [8] Properties of oxide nanopowders prepared by target evaporation with a pulse-periodic CO2 laser
    Kotov, YA
    Osipov, VV
    Ivanov, MG
    Samatov, OM
    Platonov, VV
    Azarkevich, EI
    Murzakaev, AM
    Medvedev, AI
    [J]. TECHNICAL PHYSICS, 2002, 47 (11) : 1420 - 1426
  • [9] Magnetic debris mitigation of a CO2 laser-produced Sn plasma
    Ueno, Yoshifumi
    Soumagne, Georg
    Moriya, Masato
    Suganuma, Takashi
    Abe, Tamotsu
    Komori, Hiroshi
    Endo, Akira
    Sumitani, Akira
    [J]. EMERGING LITHOGRAPHIC TECHNOLOGIES XII, PTS 1 AND 2, 2008, 6921 : Z9212 - Z9212
  • [10] Research of pulse CO2 Laser produced tin plasma
    Wu Tao
    Wang Xinbing
    Zuo DouLuo
    Lu Peixiang
    [J]. HIGH-POWER LASER MATERIALS PROCESSING: LASERS, BEAM DELIVERY, DIAGNOSTICS, AND APPLICATIONS II, 2013, 8603