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Optimization algorithm for the generation of ONCV pseudopotentials

Computer Physics Communications · 2015 · Vol. 196 · pp. 36–44
Martin SchlipfFrançois Gygi

Abstract

We present an optimization algorithm to construct pseudopotentials and use it to generate a set of Optimized Norm-Conserving Vanderbilt (ONCV) pseudopotentials for elements up to Z=83 (Bi) (excluding Lanthanides). We introduce a quality function that assesses the agreement of a pseudopotential calculation with all-electron FLAPW results, and the necessary plane-wave energy cutoff. This quality function allows us to use a Nelder–Mead optimization algorithm on a training set of materials to optimize the input parameters of the pseudopotential construction for most of the periodic table. We control the accuracy of the resulting pseudopotentials on a test set of materials independent of the training set. We find that the automatically constructed pseudopotentials (http://www.quantum-simulation.org) provide a good agreement with the all-electron results obtained using the FLEUR code with a plane-wave energy cutoff of approximately 60 Ry.

Radio Frequency Integrated Circuit Designstochastic dynamics and bifurcationUltra-Wideband Communications TechnologyAlgorithmOptimization algorithmComputer sciencePhysicsMathematicsMathematical optimization

Funding

  • U.S. Department of Energy
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