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Investigation on non-LTE radiation emitted from a laser-irradiated Au disk

     

摘要

The spectral character of X-ray emitted from laser-irradiated gold disk is studied by using the one-dimensional non-LTE multigroup radiation transport hydrodynamics code RDMG. The applicability of the "three-temperature" model in which the radiation is described with thermal conduction approximation is checked. The simulation results show that the X-ray emitted from the laser-produced gold plasma is in non-LTE, and that the atom model has significant effect on the structure of X-ray spectrum. However, the plasma states, laser absorption efficiency and X-ray conversion efficiency, which are calculated with the "three-temperature" model, are almost the same as those with non-LTE multigroup radiation transport model. This fact indicates that the "three-temperature" model can be used to study plasma states and the energy distributions produced by a laser-irradiated high-Z target. This is meaningful to the 2-D or 3-D simulation.

著录项

  • 来源
    《中国科学》|2005年第3期|P.345-360|共16页
  • 作者

    GU; Peijun; PEI; Wenbing; FENG; Tinggui;

  • 作者单位

    Institute;

    of;

    Applied;

    Physics;

    and;

    Computational;

    Mathematics,;

    P.;

    O.;

    Box;

    8009,;

    Beijing;

    100088,;

    China;

    Institute;

    of;

    Applied;

    Physics;

    and;

    Computational;

    Mathematics,;

    P.;

    O.;

    Box;

    8009,;

    Beijing;

    100088,;

    China;

    Institute;

    of;

    Applied;

    Physics;

    and;

    Computational;

    Mathematics,;

    P.;

    O.;

    Box;

    8009,;

    Beijing;

    100088,;

    China;

    Institute;

    of;

    Applied;

    Physics;

    and;

    Computational;

    Mathematics,;

    P.;

    O.;

    Box;

    8009,;

    Beijing;

    100088,;

    China;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 自然科学总论;
  • 关键词

    laser-irradiated; Au; target,; the; state; of; plasma,; X-ray,; non-LTE; radiation,; atom; model.;

  • 入库时间 2024-01-27 06:26:16

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