Laser-plasma accelerators: a new tool for science and for society

被引:26
|
作者
Malka, V [1 ]
Faure, J [1 ]
Glinec, Y [1 ]
Lifschitz, AF [1 ]
机构
[1] Ecole Polytech, Lab Opt Appl, Ecole Natl Super Tech Avancees, UMR 7639,CNRS, F-91761 Palaiseau, France
关键词
D O I
10.1088/0741-3335/47/12B/S34
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The recent and continuous development of powerful laser systems has permitted the emergence of new approaches for generating energetic electron beams. By focusing light pulses containing a few joules of energy in a few tens of femtoseconds onto gas jets, extremely large electric fields can be generated, reaching the terravolts per metre level. Such fields are 10 000 times greater than those produced in the radio-frequency cavities of conventional accelerators. As a result, the length over which electrons extracted from the target can be accelerated to hundreds of MeV is reduced to a few millimetres. The reduction of the size and the cost of laser-plasma accelerators is a promising consequence, but these electron beams also reveal original properties, which make them a wonderful tool for science. By adjusting the interaction parameters, the electron energy distribution can be tuned from a maxwellian-like distribution to a quasi-monoenergetic one. The new properties of these laser-based particle beams are well suited to many applications in different fields, including medicine (radiotherapy), chemistry (ultrafast radiolysis), material science (non-destructive material inspection using radiography) and, of course, for accelerator physics.
引用
收藏
页码:B481 / B490
页数:10
相关论文
共 50 条
  • [31] X-ray detector requirements for laser-plasma accelerators
    Armstrong, Chris D.
    Scott, G. G.
    Richards, S.
    Patel, J. K.
    Fedorov, K.
    Gray, R. J.
    Welsby, K.
    Rajeev, P. P.
    FRONTIERS IN PHYSICS, 2023, 11
  • [32] Summary Report of Working Group 1: Laser-Plasma Accelerators
    Esarey, Eric
    Wang, Xiaoming
    ADVANCED ACCELERATOR CONCEPTS, (AAC 2014), 2016, 1777
  • [33] Emittance growth due to misalignment in multistage laser-plasma accelerators
    Thevenet, Maxence
    Lehe, Remi
    Schroeder, Carl B.
    Benedetti, Carlo
    Vay, Jean-Luc
    Esarey, Eric
    Leemans, Wim P.
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2019, 22 (05):
  • [34] Summary Report of Working Group 1: Laser-Plasma Accelerators
    Schroeder, Carl B.
    Helle, Michael H.
    ADVANCED ACCELERATOR CONCEPTS, 2012, 1507 : 199 - 203
  • [35] Stability of ionization-injection-based laser-plasma accelerators
    Bohlen, Simon
    Wood, Jonathan C.
    Bruemmer, Theresa
    Gruener, Florian
    Lindstrom, Carl A.
    Meisel, Martin
    Staufer, Theresa
    D'Arcy, Richard
    Poder, Kristjan
    Osterhoff, Jens
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2022, 25 (03)
  • [36] Modeling classical and quantum radiation from laser-plasma accelerators
    Chen, M.
    Esarey, E.
    Geddes, C. G. R.
    Schroeder, C. B.
    Plateau, G. R.
    Bulanov, S. S.
    Rykovanov, S.
    Leemans, W. P.
    PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS, 2013, 16 (03):
  • [37] Theory of ionization-induced trapping in laser-plasma accelerators
    Chen, M.
    Esarey, E.
    Schroeder, C. B.
    Geddes, C. G. R.
    Leemans, W. P.
    PHYSICS OF PLASMAS, 2012, 19 (03)
  • [38] Efficient Modeling of Laser-Plasma Accelerators with INF&RNO
    Benedetti, C.
    Schroeder, C. B.
    Esarey, E.
    Geddes, C. G. R.
    Leemans, W. P.
    ADVANCED ACCELERATOR CONCEPTS, 2010, 1299 : 250 - 255
  • [39] LASER-PLASMA ACCELERATORS Gamma-rays going cheap
    Shvets, Gennady
    NATURE PHYSICS, 2011, 7 (11) : 834 - 835
  • [40] Laser Technology for Thomson MeV Photon Sources Based on Laser-Plasma Accelerators
    Geddes, C. G. R.
    Matlis, N. H.
    Steinke, S.
    Esarey, E.
    Mittelberger, D. E.
    Rykovanov, S.
    Schroeder, C. B.
    Toth, Cs.
    Vay, J. -L
    Leemans, W. P.
    ADVANCED ACCELERATOR CONCEPTS, (AAC 2014), 2016, 1777