A universal density functional theory for ab-initio electronic structure and dynamics across the warm dense matter regime
ORAL · Invited
Abstract
We will discuss the general formulation of KS-DFT, sDFT and mDFT within the same context. All are forms of low-rank approximations for the electronic density matrix. This simple formulation provides a path to many potential advancements, including generalization to projector-augmented wave pseudopotential basis sets.[3] Additionally, we will discuss the preliminary applications of this method to calculation of electron and ion transport properties. We will highlight calculated stopping powers in warm dense carbon and hot dense CH. [5]
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Publication: [1] 2020. A. J. White, L. A. Collins, "Fast and Universal Kohn Sham Density Functional Theory Algorithm for Warm Dense Matter to Hot Dense Plasma", Phys. Rev. Lett. 125, 055002.<br><br>[2] 2022. A. J. White, L. A. Collins, K. Nichols, S.X. Hu, "Mixed stochastic-deterministic time-dependent density functional theory: application to stopping power of warm dense carbon", J. Phys. Cond. Matter 34, 174001[Special Issue: Emerging Leaders 2022]<br><br>[3] 2023. V. Sharma, L. A. Collins, A. J. White, "Fast and Universal Kohn Sham Density Functional Theory Algorithm for Warm Dense Matter to Hot Dense Plasma", Phys. Rev. E. (Letter) In Press.<br><br>[4] 2022. S. Malko, W. Cayzac, V. Ospina-Bohorquez, et. al. "Proton stopping measurements at low velocity in warm dense carbon", Nature Comm. 13, 1-12<br><br>[5] 2023. K. A. Nichols, S. X. Hu, A.J. White et. al. "Time-dependent density-functional-theory calculations of the nonlocal electron stopping range for inertial confinement fusion applications", In Review
Presenters
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Alexander J White
Los Alamos Natl Lab
Authors
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Alexander J White
Los Alamos Natl Lab