Efficient Acceleration of Electrons by Moderate-Power Femtosecond Laser Pulses

被引:0
|
作者
Vais, O. E. [1 ,2 ]
Lobok, M. G. [1 ,2 ]
Soloviev, A. A. [3 ]
Mironov, S. Yu. [3 ]
Khazanov, E. A. [3 ]
Bychenkov, V. Yu. [1 ,2 ]
机构
[1] Russian Acad Sci, Lebedev Phys Inst, Moscow 119991, Russia
[2] Dukhov All Russia Res Inst Automat, Ctr Fundamental & Appl Res, Moscow 127030, Russia
[3] Russian Acad Sci, Inst Appl Phys, Fed Res Ctr, Nizhnii Novgorod 603950, Russia
关键词
D O I
10.1134/S0021364023603548
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The relativistic self-trapping of a laser pulse is an efficient mechanism for the acceleration of electrons, which allows one to achieve an extreme charge of a high-energy particle beam and the corresponding conversion coefficient of laser energy. It has been shown that the compression of the femtosecond laser pulse in this regime using the innovative compression after compressor approach (CafCA) [E.A. Khazanov, S.Yu. Mironov, and G. Mourou, Phys. Usp. 62, 1096 (2019)] to extremely short durations keeping the energy of the laser beam significantly increases the efficiency of particle acceleration. This effect has been illustrated on the example of the Multitera laser facility for the project implemented at the Russian National Center for Physics and Mathematics.
引用
收藏
页码:875 / 880
页数:6
相关论文
共 50 条
  • [21] Acceleration of electrons and electromagnetic fields of highly intense laser pulses
    Lourenco, Stefanie
    Kowarsch, Nicolas
    Scheid, Werner
    Wang, P. X.
    LASER AND PARTICLE BEAMS, 2010, 28 (01) : 195 - 201
  • [22] Bubble acceleration of electrons with few-cycle laser pulses
    Geissler, Michael
    Schreiber, Joerg
    Meyer-ter-Vehn, Juergen
    NEW JOURNAL OF PHYSICS, 2006, 8
  • [23] SELF-MODULATION OF LASER-PULSES IN PLASMA AND LASER ACCELERATION OF ELECTRONS
    ANDREEV, NE
    GORBUNOV, LM
    KIRSANOV, VI
    PLASMA PHYSICS REPORTS, 1995, 21 (10) : 824 - 834
  • [24] Direct laser acceleration of electrons in the plasma bubble by tightly focused laser pulses
    Wang, Tianhong
    Khudik, Vladimir
    Arefiev, Alexey
    Shvets, Gennady
    PHYSICS OF PLASMAS, 2019, 26 (08)
  • [25] Survey of Moderate-Power Electric Propulsion Systems
    Petro, Elaine M.
    Sedwick, Raymond J.
    JOURNAL OF SPACECRAFT AND ROCKETS, 2017, 54 (03) : 529 - 541
  • [26] Enhanced proton acceleration using split intense femtosecond laser pulses
    Bai, R. X.
    Zhou, C. T.
    Huang, T. W.
    Jiang, K.
    Ju, L. B.
    Li, R.
    Peng, H.
    Yu, M. Y.
    Qiao, B.
    Ruan, S. C.
    He, X. T.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2021, 63 (08)
  • [27] Production of femtosecond single-bunched electrons by laser wakefield acceleration
    Ogata, A
    Nakajima, K
    Andreev, N
    JOURNAL OF NUCLEAR MATERIALS, 1997, 248 : 392 - 399
  • [28] Acceleration of electrons in a thin metal films by the strong ultrashort laser pulses
    Lugovskoy, AV
    Zinoviev, AV
    Usmanov, T
    GAS AND CHEMICAL LASERS AND INTENSE BEAM APPLICATIONS, 1998, 3268 : 236 - 246
  • [29] Acceleration of Electrons in Modulated Plasma Channels with Radially Polarized Laser Pulses
    Layer, B. D.
    Palastro, J. P.
    York, A.
    Yoon, S. -J.
    Elle, J.
    Antonsen, T. M.
    Milchberg, H. M.
    ADVANCED ACCELERATOR CONCEPTS, 2010, 1299 : 166 - 170
  • [30] Resonant acceleration of electrons by intense circularly polarized Gaussian laser pulses
    Niu, H. Y.
    He, X. T.
    Qiao, B.
    Zhou, C. T.
    LASER AND PARTICLE BEAMS, 2008, 26 (01) : 51 - 59