Burkhard Militzer, Ph.D.
Affiliations: | 2000 | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
Area:
computational physicsGoogle:
"Burkhard Militzer"Parents
Sign in to add mentorDavid Matthew Ceperley | grad student | 2000 | UIUC | |
(Path integral Monte Carlo simulations of hot dense hydrogen.) |
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Publications
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Kim YJ, Militzer B, Boates B, et al. (2022) Evidence for Dissociation and Ionization in Shock Compressed Nitrogen to 800 GPa. Physical Review Letters. 129: 015701 |
Wu J, González-Cataldo FJ, Soubiran F, et al. (2022) The phase diagrams of beryllium and magnesium oxide at megabar pressures. Journal of Physics. Condensed Matter : An Institute of Physics Journal |
Militzer B, González-Cataldo F, Zhang S, et al. (2021) First-principles equation of state database for warm dense matter computation. Physical Review. E. 103: 013203 |
Zhang S, Marshall MC, Yang LH, et al. (2020) Benchmarking boron carbide equation of state using computation and experiment. Physical Review. E. 102: 053203 |
Militzer B, González-Cataldo F, Zhang S, et al. (2020) Nonideal mixing effects in warm dense matter studied with first-principles computer simulations. The Journal of Chemical Physics. 153: 184101 |
Olson MA, Bhatia S, Larson P, et al. (2020) Prediction of chlorine and fluorine crystal structures at high pressure using symmetry driven structure search with geometric constraints. The Journal of Chemical Physics. 153: 094111 |
Wahl SM, Parisi M, Folkner WM, et al. (2020) Equilibrium Tidal Response of Jupiter: Detectability by the Juno Spacecraft The Astrophysical Journal. 891: 42 |
González-Cataldo F, Soubiran F, Militzer B. (2020) Equation of state of hot, dense magnesium derived with first-principles computer simulations Physics of Plasmas. 27: 92706 |
Soubiran F, González-Cataldo F, Driver KP, et al. (2019) Magnesium oxide at extreme temperatures and pressures studied with first-principles simulations. The Journal of Chemical Physics. 151: 214104 |
Militzer B, Pollock E, Ceperley D. (2019) Path integral Monte Carlo calculation of the momentum distribution of the homogeneous electron gas at finite temperature High Energy Density Physics. 30: 13-20 |