Emittance growth mechanisms for laser-accelerated proton beams

被引:32
|
作者
Kemp, Andreas J. [1 ]
Fuchs, J.
Sentoku, Y.
Sotnikov, V.
Bakeman, M.
Antici, P.
Cowan, T. E.
机构
[1] Univ Nevada, Dept Phys, Reno, NV 89557 USA
[2] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA
[3] Univ Paris 06, CEA, CNRS UMR 7605, Lab Utilisat Lasers Intenses, F-75252 Paris 05, France
关键词
D O I
10.1103/PhysRevE.75.056401
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
In recent experiments the transverse normalized rms emittance of laser-accelerated MeV ion beams was found to be <0.002 mm mrad, which is at least 100 times smaller than the emittance of thermal ion sources used in accelerators [T. E. Cowan , Phys. Rev. Lett. 92, 204801 (2004)]. We investigate the origin for the low emittance of laser-accelerated proton beams by studying several candidates for emittance-growth mechanisms. As our main tools, we use analytical models and one- and two-dimensional particle-in-cell simulations that have been modified to include binary collisions between particles. We find that the dominant source of emittance is filamentation of the laser-generated hot electron jets that drive the ion acceleration. Cold electron-ion collisions that occur before ions are accelerated contribute less than ten percent of the final emittance. Our results are in qualitative agreement with the experiment, for which we present a refined analysis relating emittance to temperature, a better representative of the fundamental beam physics.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Research status and prospect of tumor therapy by using laser-accelerated proton beams
    Lu, Jianfeng
    Luo, Yunbin
    Wang, Chao
    Ma, Yuqi
    Zhao, Xingyi
    Wu, Di
    Wang, Kedong
    Zhao, Jiarui
    Xu, Shengxuan
    Geng, Yixing
    Zhao, Yanying
    Zhu, Kun
    Lin, Chen
    Ma, Wenjun
    Chen, Jiaer
    Yan, Xueqing
    Yang, Gen
    CHINESE SCIENCE BULLETIN-CHINESE, 2023, 68 (09): : 1112 - 1124
  • [32] The Energy Selection System for the laser-accelerated proton beams at ELI-Beamlines
    Tramontana, A.
    Candiano, G.
    Carpinelli, M.
    Cirrone, G. A. P.
    Cuttone, G.
    Jia, S. Bijan
    Korn, G.
    Licciardello, T.
    Maggiore, M.
    Manti, L.
    Margarone, D.
    Pisciotta, P.
    Romano, F.
    Stancampiano, C.
    Schillaci, F.
    Scuderi, V.
    JOURNAL OF INSTRUMENTATION, 2014, 9
  • [33] Development of a Compton Camera for Online Range Monitoring of Laser-Accelerated Proton Beams
    Thirolf, P.
    Aldawood, S.
    Lang, C.
    Parodi, K.
    MEDICAL PHYSICS, 2013, 40 (06)
  • [34] Chromatic energy filter and characterization of laser-accelerated proton beams for particle therapy
    Hofmann, Ingo
    Meyer-ter-Vehn, Juergen
    Yan, Xueqing
    Al-Oman, Husam
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2012, 681 : 44 - 54
  • [35] A transport beamline solution for laser-accelerated proton beams at ELI-Beamlines
    Tramontana, A.
    NUOVO CIMENTO C-COLLOQUIA AND COMMUNICATIONS IN PHYSICS, 2015, 38 (02):
  • [36] Employing Laser-Accelerated Proton Beams to Diagnose High Intensity Laser-Plasma Interactions
    Sarri, G.
    Cecchetti, C. A.
    Quinn, K.
    Norreys, P. A.
    Trines, R.
    Willi, O.
    Fuchs, J.
    McKenna, P.
    Quinn, M.
    Pegoraro, F.
    Bulanov, S. V.
    Borghesi, M.
    LIGHT AT EXTREME INTENSITIES 2011, 2012, 1462 : 149 - 154
  • [37] Active steering of laser-accelerated ion beams
    Lundh, O.
    Glinec, Y.
    Homann, C.
    Lindau, F.
    Persson, A.
    Wahlstrom, C. -G.
    Carroll, D. C.
    McKenna, P.
    APPLIED PHYSICS LETTERS, 2008, 92 (01)
  • [38] Recent developments on laser-accelerated particle beams
    Enghardt, W.
    RADIOTHERAPY AND ONCOLOGY, 2014, 111 : S82 - S82
  • [39] Optimization of the Energy Selection System with Varying Magnetic Field for Laser-Accelerated Proton Beams
    Kim, D.
    Yoo, S.
    Cho, W.
    Kim, M.
    Jung, J.
    Lee, S.
    Suh, T.
    MEDICAL PHYSICS, 2012, 39 (06) : 3771 - 3771
  • [40] Development of a Compton Camera Prototype for Online Range Verification of Laser-Accelerated Proton Beams
    Thirolf, P. G.
    Aldawood, S.
    Boehmer, M.
    Bortfeldt, J.
    Castelhano, I.
    Gernhaeuser, R.
    von der Kolff, H.
    Lang, C.
    Maier, L.
    Schaart, D. R.
    Parodi, K.
    MEDICAL PHYSICS, 2014, 41 (06) : 165 - 165