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20182021
most citedAtom-in-jellium equations of state in the high energy density regime

15 citations · 16 across the 3 of their papers we have counts for

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physics.comp-ph20201 cited

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…

physics.comp-ph2019

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…

physics.comp-ph2019

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…

physics.comp-ph2019

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…

physics.comp-ph2019

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…

physics.comp-ph201915 cited

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…