 
 
 
 
 
 
 
 
  
  Fully relativistic pseudopotentials
 
 
 Fully relativistic pseudopotentials generated by
 the MBK (PRB 47, 6728 (1993)) scheme within LDA (CA13) and GGA (PBE13) which contain
 a partial core correction and fully relativistic effects including spin-orbit coupling.
 
 
 
  
 
 
 
 
 
 
  
  Pseudo-atomic orbitals
 
 
 The number below the symbol means a cutoff radius (a.u.) of the confinement
 potential. These file includes fifteen radial parts for each angular 
 momentum quantum number l (=0,1,2,3). The basis functions were generated by variationally 
 optimizing the corresponding primitive basis functions in the single atom and the FCC bulk. 
 The input files used for the orbital optimization can be found at 
 Rh_opt.dat
 and 
 Rhfcc_opt.dat. 
 Since Rh_CA13.vps and Rh_PBE13.vps include the 4p, 4d, and 5s states (15 electrons) 
 as the valence states, the minimal basis set is Rh*.*-s1p1d1. 
 Our recommendation for the choice of cutoff radius of basis functions is that  
 Rh7.0.pao is enough for bulks, but Rh9.0.pao or Rh11.0.pao is preferable 
 for molecular systems.
 
 
 
  
 
 
 
Benchmark calculations by the PBE13 pseudopotential with the various basis functions  
 
(1) Calculation of the total energy as a function of lattice constant in the fcc structure, 
where the total energy is plotted relative to the minimum energy for each case. a0 
and B0 are the equilibrium lattice constant and bulk modulus obtained by fitting to 
the Murnaghan equation of state. The difference between Rh7.0-s2p2d2f1 and Rh7.0-s3p3d2f1
in the total energy at the minimum point is 0.0032 eV/atom.
An input file used for the OpenMX calculations can be found at
Rhfcc-EvsV.dat.
For comparison the result by the Wien2k code is also shown, where 
the calculation was performed by default setting in the Ver. 9.1 of Wien2k except for 
the use of RMT x KMAX of 12.
 
 
(2) Calculations of the band dispersion in the fcc structure, 
where the non-spin polarized collinear calculation with the lattice constant of 3.800 Ang.
was performed using Rh_PBE13.vps and Rh7.0-s2p2d2f1, 
and the origin of the energy is taken to be the Fermi level.
The input file used for the OpenMX calculations can be found at
Rhfcc-Band.dat.
For comparison the result by the Wien2k code is also shown, where 
the calculation was performed by default setting in the Ver. 9.1 of Wien2k 
except for the use of RMT x KMAX of 12.
 
