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- W2024247168 abstract "We investigate the ground-state energy of a neutral collection of protons and electrons, under the assumption that in the ground-state configuration, static protons occupy the sites of a rigid Bravais lattice. We use the Wigner-Seitz method in conjunction with three postulated potentials: bare Coulomb, Thomas-Fermi screening, and screening by a uniform background charge. Within these approximations the exact band-minimum energy and wave function are derived. For each of the three potentials the approximate minimum ground-state energy per proton (relative to isolated electrons and protons) is, respectively, -1.078, -1.038, and -1.052 Ry. These three minima all fall at a density of about 0.60 g/${mathrm{cm}}^{3}$, which is thus an approximate lower bound on the density of metallic hydrogen at its transition pressure." @default.
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- W2024247168 date "1984-05-15" @default.
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- W2024247168 title "Ground-state energy of metallic hydrogen in the Wigner-Seitz approximation" @default.
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- W2024247168 doi "https://doi.org/10.1103/physrevb.29.5562" @default.
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