articleTop 1% cited
Efficient pseudopotentials for plane-wave calculations
Physical review. B, Condensed matter · 1991 · Vol. 43(3) · pp. 1993–2006
N. Troullier✉(University of Minnesota)José Luı́s Martins(University of Minnesota)
Abstract
We present a simple procedure to generate first-principles norm-conserving pseudopotentials, which are designed to be smooth and therefore save computational resources when used with a plane-wave basis. We found that these pseudopotentials are extremely efficient for the cases where the plane-wave expansion has a slow convergence, in particular, for systems containing first-row elements, transition metals, and rare-earth elements. The wide applicability of the pseudopotentials are exemplified with plane-wave calculations for copper, zinc blende, diamond, \ensuremath{\alpha}-quartz, rutile, and cerium.
High-pressure geophysics and materialsCrystallography and Radiation PhenomenaSolid-state spectroscopy and crystallographyPlane wavePseudopotentialCeriumPhysicsPlane (geometry)DiamondCondensed matter physicsMaterials scienceQuantum mechanicsMathematics
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