Screened hybrid functional applied to 3d^0-->3d^8 transition-metal perovskites LaMO3 (M=Sc-Cu): influence of the exchange mixing parameter on the structural, electronic and magnetic properties
Jangang He, Cesare Franchini

TL;DR
This study evaluates the HSE hybrid functional for LaMO3 perovskites, showing how the exchange mixing parameter affects their properties and identifying optimal values across the series.
Contribution
It demonstrates the effectiveness of the HSE functional in modeling complex LaMO3 compounds and establishes a trend for the optimal exchange mixing parameter based on d-orbital filling.
Findings
HSE improves standard DFT for LaMO3 series
Optimal alpha decreases with increasing d-orbital filling
Correlated paramagnetic metals are better treated with DFT
Abstract
We assess the performance of the Heyd-Scuseria-Ernzerhof (HSE) screened hybrid density functional scheme applied to the perovskite family LaMO3 (M=Sc-Cu) and discuss the role of the mixing parameter alpha (which determines the fraction of exact Hartree-Fock exchange included in the density functional theory (DFT) exchange-correlation functional) on the structural, electronic, and magnetic properties. The physical complexity of this class of compounds, manifested by the largely varying electronic characters (band/Mott-Hubbard/charge-transfer insulators and metals), magnetic orderings, structural distortions (cooperative Jahn-Teller like instabilities), as well as by the strong competition between localization/delocalization effects associated with the gradual filling of the t_2g and e_g orbitals, symbolize a critical and challenging case for theory. Our results indicates that HSE is able…
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