• DocumentCode
    2440987
  • Title

    Laser-produced collimated proton beam by a tailored thin foil target

  • Author

    Kawata, Shigeo ; Nodera, Yasuyuki ; Onuma, Naoki ; Nakamura, Masaki ; Sonobe, Ryo ; Kikuchi, Takashi ; Kong, Qing ; Wang, Ping X. ; Limpouch, Jiri ; Klimo, Ondrej ; Andreev, Alexander

  • Author_Institution
    Grad. Sch. of Eng., Utsunomiya Univ., Utsunomiya
  • fYear
    2008
  • fDate
    15-19 June 2008
  • Firstpage
    1
  • Lastpage
    1
  • Abstract
    A thin-foil tailored hole target is proposed for an efficient production of a collimated proton beam in a laser target interaction. The tailored target has holes at the target surface. When an intense short pulse laser illuminates the thin foil hole target, transverse edge fields of an accelerated electron cloud and a proton source cloud are shielded by a protuberant part of the hole so that the proton beam divergence is suppressed. This paper presents a robustness of the hole target against laser parameter changes, against a contaminant proton source layer and against a laser alignment error. The 2.5-dimensional PIC (particle-in-cell) simulations also present that a multiple-hole target serves a high energy efficiency of the proton beam generation. Recent researches in this field have demonstrated acceleration of ions to a high energy in an interaction between an intense laser pulse and a thin foil target. The ion beams are expected to be useful for basic particle physics, medical therapy, controlled nuclear fusion, high-energy sources and so on. The important issues of the ion beam production include a quality of the ion beam and an efficient energy convergence to the ion beam from the laser. This paper presents a new method for the efficient collimated proton beam in the laser foil interaction.
  • Keywords
    particle optics; plasma electromagnetic wave propagation; plasma production by laser; plasma simulation; proton beams; PIC simulation; accelerated electron cloud; contaminant proton source layer; ion acceleration; laser alignment error; laser produced collimated proton beam; laser-target interaction; multiple hole target; particle in cell simulation; proton beam divergence suppression; proton beam generation high energy efficiency; proton source cloud; thin foil tailored hole target; transverse edge fields; Acceleration; Clouds; Collimators; Ion beams; Laser fusion; Laser transitions; Optical pulses; Particle beams; Production; Protons;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Plasma Science, 2008. ICOPS 2008. IEEE 35th International Conference on
  • Conference_Location
    Karlsruhe
  • ISSN
    0730-9244
  • Print_ISBN
    978-1-4244-1929-6
  • Electronic_ISBN
    0730-9244
  • Type

    conf

  • DOI
    10.1109/PLASMA.2008.4590980
  • Filename
    4590980