Correlated ion stopping in dense plasmas with a temperature‐dependent plasmon pole approximation

Author:

Zakirova Zhanerke1,Tashev Bekbolat1,Deutsch Claude2

Affiliation:

1. Physics Department Abbai Kazakh National Pedagogical University Almaty Kazakhstan

2. Laboratoire de Physique des Gaz et Plasmas UMR‐CNRS 8578, UPS, Université Paris‐Saclay Orsay France

Abstract

AbstractThe plasmon pole approximation used for the stopping function in a dense electron plasma is given a temperature‐dependent cutoff wavenumber via the ion projectile thermal wavelength. Excepted for projectile inter‐ion distance smaller than the target electron screening length and small ion fragment velocities, featuring a attosecond interaction time with a maximum correlated ion stopping (CIS) in inertial confinement fusion and warm dense matter (WDM), the given procedure is shown to yield back accurately the CIS estimated within the standard random phase approximation framework at any temperature, provided the ion fragment distribution is taken Gaussian.

Publisher

Wiley

Reference12 articles.

1. Correlated ion stopping in plasmas

2. B. J. B.Crowley Generalized plasmon‐pole approximation for the dielectric function of a multicomponent plasma arXiv:1508.05606 in [plasma‐physics‐ph].2015.

3. Fragmentation and stopping of heavy cluster ions in a lithium target−Application to target implosion

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