First Principles Calculations of Shock Compressed Fluid Helium
Materials Science
2009-11-11 v1
Abstract
The properties of hot dense helium at megabar pressures were studied with two first-principles computer simulation techniques, path integral Monte Carlo and density functional molecular dynamics. The simulations predicted that the compressibility of helium is substantially increased by electronic excitations that are present in the hot fluid at thermodynamic equilibrium. A maximum compression ratio of 5.24(4)-fold the initial density was predicted for 360 GPa and 150000 K. This result distinguishes helium from deuterium, for which simulations predicted a maximum compression ratio of 4.3(1). Hugoniot curves for statically precompressed samples are also discussed.
Keywords
Cite
@article{arxiv.cond-mat/0609640,
title = {First Principles Calculations of Shock Compressed Fluid Helium},
author = {B. Militzer},
journal= {arXiv preprint arXiv:cond-mat/0609640},
year = {2009}
}
Comments
Accepted to publication in Physical Review Letters