Laser Driven Ion accelerators - current status and perspective

被引:0
|
作者
Zepf, M. [1 ]
Robinson, A. P. L. [2 ]
机构
[1] Queens Univ Belfast, Dept Phys & Astron, Belfast BT7 1NN, Antrim, North Ireland
[2] Cent Laser Fac, Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England
来源
ADVANCED ACCELERATOR CONCEPTS | 2009年 / 1086卷
关键词
PROTON-BEAMS; SOLIDS;
D O I
暂无
中图分类号
O59 [应用物理学];
学科分类号
摘要
The interaction of ultra-intense lasers with thin foil targets has recently emerged as a route to achieving extreme acceleration gradients and hence ultra-compact proton and ion accelerators. There are a number of distinct physical processes by which the protons/ions can be accelerated to energies in excess of 10 MeV. The recent development is discussed and a new mechanism - Radiation Pressure Acceleration is highlighted as a route to achieving efficient production of relativistic ions beams.
引用
收藏
页码:21 / +
页数:3
相关论文
共 50 条
  • [1] Laser-driven ion accelerators for tumor therapy revisited
    Linz, Ute
    Alonso, Jose
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2016, 19 (12):
  • [2] Angular-Resolved Thomson Parabola Spectrometer for Laser-Driven Ion Accelerators
    Salgado-Lopez, Carlos
    Imanol Apinaniz, Jon
    Luis Henares, Jose
    Antonio Perez-Hernandez, Jose
    de Luis, Diego
    Volpe, Luca
    Gatti, Giancarlo
    SENSORS, 2022, 22 (09)
  • [3] Towards ion beam therapy based on laser plasma accelerators
    Karsch, Leonhard
    Beyreuther, Elke
    Enghardt, Wolfgang
    Gotz, Malte
    Masood, Umar
    Schramm, Ulrich
    Zeil, Karl
    Pawelke, Joerg
    ACTA ONCOLOGICA, 2017, 56 (11) : 1359 - 1366
  • [4] Shaping of ion energy spectrum due to ionization in ion acceleration driven by an ultra-short pulse laser
    Yu, J. Q.
    Ma, W. J.
    Lin, C.
    Yan, X. Q.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2018, 60 (11)
  • [5] Superintense Laser-driven Ion Beam Analysis
    Passoni, M.
    Fedeli, L.
    Mirani, F.
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [6] Role of resistivity gradient in laser-driven ion acceleration
    Gizzi, L. A.
    Betti, S.
    Foerster, E.
    Giulietti, D.
    Hoefer, S.
    Koester, P.
    Labate, L.
    Loetzsch, R.
    Robinson, A. P. L.
    Uschmann, I.
    PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS, 2011, 14 (01):
  • [7] Laser-Driven Shock Acceleration of Monoenergetic Ion Beams
    Fiuza, F.
    Stockem, A.
    Boella, E.
    Fonseca, R. A.
    Silva, L. O.
    Haberberger, D.
    Tochitsky, S.
    Gong, C.
    Mori, W. B.
    Joshi, C.
    PHYSICAL REVIEW LETTERS, 2012, 109 (21)
  • [8] Modeling laser-driven ion acceleration with deep learning
    Djordjevic, B. Z.
    Kemp, A. J.
    Kim, J.
    Simpson, R. A.
    Wilks, S. C.
    Ma, T.
    Mariscal, D. A.
    PHYSICS OF PLASMAS, 2021, 28 (04)
  • [9] Radiochromic film diagnostics for laser-driven ion beams
    Kaufman, J.
    Margarone, D.
    Candiano, G.
    Kim, I. J.
    Jeong, T. M.
    Psikal, J.
    Romano, F.
    Cirrone, P.
    Scuderi, V.
    Korn, G.
    RESEARCH USING EXTREME LIGHT: ENTERING NEW FRONTIERS WITH PETAWATT-CLASS LASERS II, 2015, 9515
  • [10] Ion-solid interactions: current status, new perspectives
    Fink, D
    Chadderton, LT
    RADIATION EFFECTS AND DEFECTS IN SOLIDS, 2005, 160 (3-4): : 67 - 83