Electron-proton relaxation in hot-dense plasmas with a screened quantum statistical potential
ID:37 View Protection:ATTENDEE Updated Time:2024-04-22 22:29:11 Hits:295 Oral Presentation

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Abstract
Modeling the non-equilibrium process between ions and electrons is of great importance in laboratory fusion ignition, laser-plasma interaction, and astrophysics. For hot and dense plasmas, theoretical descriptions of Coulomb collisions remain complicated due to quantum effect at short distances and screening effect at long distances. In this paper, we propose an analytical screened quantum statistical potential that takes into account both the short-range quantum diffraction effect and the long-range screening effect. By implementing the newly developed potential into the binary scattering framework, the electron-proton temperature relaxation in hot-dense hydrogen plasmas is investigated. In both the classical and quantum limits, analytical expressions for the Coulomb logarithm have been obtained, which are generally embedded in an asymptotic matching formula. Quantitative comparisons with molecular dynamics (MD) simulations and recent OMEGA experiments demonstrate that the present modeling outperforms the widely used analytical models in the hot dense regime.
Keywords
Electron-proton relaxation,,screened quantum statistical potential,,molecular dynamics simulations,,experiments
Speaker
Zhengfeng Fan
Institute of Applied Physics and Computational Mathematics

Submission Author
Zhengfeng Fan Institute of Applied Physics and Computational Mathematics
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Important Date
  • Conference Date

    May 13

    2024

    to

    May 17

    2024

  • Mar 31 2024

    Registration deadline

  • Apr 15 2024

    Abstract Submission Deadline

Sponsored By
National Key Laboratory of Shock wave and Detonation Physics
School of Physics, Zhejiang University
Pulsed Power Technology and Application Association of Chinese Nuclear Society
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