English

Pair potentials for warm dense matter and their application to x-ray Thomson scattering in aluminum and beryllium

Materials Science 2016-12-02 v1

Abstract

Ultrafast laser experiments yield increasingly reliable data on warm dense matter, but their interpretation requires theoretical models. We employ an efficient density functional neutral-pseudoatom hypernetted-chain (NPA-HNC) model with accuracy comparable to ab initio simulations and which provides first-principles pseudopotentials and pair-potentials for warm-dense matter. It avoids the use of (i) ad hoc core-repulsion models and (ii) "Yukawa screening", and (iii) need not assume ionelectron thermal equilibrium. Computations of the x-Ray Thomson scattering (XRTS) spectra of aluminum and beryllium are compared with recent experiments and with density-functional-theory molecular-dynamics (DFT-MD) simulations. The NPA-HNC structure factors, compressibilities, phonons and conductivities agree closely with DFT-MD results, while Yukawa screening gives misleading results. The analysis of the XRTS data for two of the experiments, using two-temperature quasi-equilibrium models, is supported by calculations of their temperature relaxation times.

Keywords

Cite

@article{arxiv.1612.00331,
  title  = {Pair potentials for warm dense matter and their application to x-ray Thomson scattering in aluminum and beryllium},
  author = {Louis Harbour and M. W. Chandre Dharma-wardana and Dennis D. Klug and Laurent J. Lewis},
  journal= {arXiv preprint arXiv:1612.00331},
  year   = {2016}
}

Comments

12 pages, 11 figures