15 citations · 16 across the 3 of their papers we have counts for
6 papers · 1 filter
Sensitivity of stellar physics to the equation of state
D. C. Swift, T. Lockard, M. Bethkenhagen +3
The formation and evolution of stars depends on various physical aspects of stellar matter, including the equation of state (EOS) and transport properties. Although often dismissed…
Equations of state for ruthenium and rhodium
Damian C. Swift, Thomas Lockard, Olivier Heuze +8
Ru and Rh are interesting cases for comparing equations of state (EOS), because most general purpose EOS are semi-empirical, relying heavily on shock data, and none has been report…
High pressure melt locus of iron from atom-in-jellium calculations
Damian C. Swift, Thomas Lockard, Raymond F. Smith +2
Although usually considered as a technique for predicting electron states in dense plasmas, atom-in-jellium calculations can be used to predict the mean displacement of the ion fro…
Atom-in-jellium equations of state for cryogenic liquids
Thomas Lockard, Marius Millot, Burkhard Militzer +4
Equations of state (EOS) calculated from a computationally efficient atom-in-jellium treatment of the electronic structure have recently been shown to be consistent with more rigor…
High temperature ion-thermal behavior from average-atom calculations
Damian C. Swift, Mandy Bethkenhagen, Alfredo A. Correa +5
Atom-in-jellium calculations of the Einstein frequency were used to calculate the mean displacement of an ion over a wide range of compression and temperature. Expressed as a fract…
Atom-in-jellium equations of state in the high energy density regime
Damian C. Swift, Thomas Lockard, Richard G. Kraus +5
Recent path-integral Monte Carlo and quantum molecular dynamics simulations have shown that computationally efficient average-atom models can predict thermodynamic states in warm d…