155 / 2023-04-14 22:28:04
Adiabatic Sound Speed of Shock-Compressed Liquid Deuterium up to 800 GPa
deuterium, sound speed, shock wave
摘要录用
晓溪 段 / 中国工程物理研究院激光聚变研究中心
Hydrogen, the most abundant element in the universe, is of fundamental importance for astrophysics and technological applications such as inertial confinement fusion (ICF) [1]. The adiabatic sound speed cs derivative from EOS is a more sensitive and crucial variable to verify existing theories since the sound speed behind a shock front in fluids defines the local slope of the isentrope along the shock states in the pressure-density frame as . In this work, we report the laser-driven experiments of adiabatic sound speed measurements on the ShenGuang (SG) series 100-kilojoule laser facility at Laser Fusion Research Center (LFRC) for shock-compressed liquid deuterium at a broad pressure range of 200 < P < 800 GPa, providing the highest-pressure data to date for constraining theoretical models. The existing EOS models obviously overestimate the sound speed than the experimental data at pressures between 200 to 350 GPa, although data beyond 350 GPa are in agreement. The experimental results are consistent with our modified direct path-integral Monte Carlo (M-DPIMC) simulations, which demonstrate that atomic ionization is quite essential for the accurate prediction of sound speed in the partial ionization regime. This work is of significant importance for the development of the high-pressure response properties of hydrogen’s isotopes, directly related to inertial confinement fusion and astrophysics.

 
重要日期
  • 会议日期

    06月05日

    2023

    06月09日

    2023

  • 04月30日 2023

    提前注册日期

  • 05月01日 2023

    摘要截稿日期

  • 05月01日 2023

    摘要录用通知日期

  • 05月01日 2023

    初稿截稿日期

  • 05月31日 2023

    注册截止日期

主办单位
等离子体物理重点实验室
北京师范大学天文系
承办单位
Matter and Radiation at Extremes期刊
中国工程物理研究院流体物理研究所
北京应用物理与计算数学研究所
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