Y

Functional : LDA Ceperley/Alder Perdew/Zunger (1980)

Projection : Mulliken dipole

Calculation the bulk modulus obtained by fitting to the Murnaghan equation. The energy is plotted relative to the minimum energy for each case, -42.28 eV/atom in Fireball and -42.8002 eV/atom for Quantum espresso using the pseudopotentials Y.pbe-mt_fhi.UPF . a0 and B0 are the equilibrium lattice constant and bulk modulus obtained by fitting to the Murnaghan equation of state.

bulk.png

Calculation the band dispersion for the fcc structure with the lattice constant of 4.5 Å

Fireball

bandas for Fireball

Quamtum espresso

bandas

The cut off radio of the orbitals in Fireball are rs = 8.0 (bohr), rp = 8.0 (bohr), rd = 8.0 (bohr), and was generate like qs = 0.6, qp = 0.0, qd = 1.0, .

wf.png
Other basis
Base Functional Projection method Crystal structure Lattice parameter (Å) Bulk modulus (GPa)
Ys070800p000800d090800 LDA Weighted LWeighted Lowdinouml;wdin fcc 5.090 36
Ys190800p000800d000800 LDA Löwdin fcc 5.086 37
Ys060800p000800d100800 LDA Mulliken dipole fcc 5.084 38
Ys000700p000700d050700 GGA Weighted LWeighted Lowdinouml;wdin fcc 5.085 47
Ys080650p000650d050650 GGA Löwdin fcc 5.088 50
Ys000650p000650d100650 GGA Mulliken dipole fcc 5.089 51

The LDA calculation is done with the ncpp file to obtain 039.pp pseudopotential :

ncpp.psot ncpp.psot

The GGA calculation is done with the ncpp file to obtain 039.pp pseudopotential :

ncpp.psot ncpp.psot