*************************************************** Input file *************************************************** # # File Name # System.CurrrentDir ./ # default=./ System.Name Rh_PBE11 Log.print OFF # ON|OFF System.UseRestartfile yes # NO|YES, default=NO System.Restartfile Rh_PBE11 # default=null # # Calculation type # eq.type dirac # sch|sdirac|dirac calc.type vps # ALL|VPS|PAO xc.type GGA # LDA|GGA # # Atom # AtomSpecies 45 max.occupied.N 5 total.electron 45.0 valence.electron 15.0 # # parameters for solving 1D-differential equations # grid.xmin -9.0 # default=-7.0 rmin(a.u.)=exp(grid.xmin) grid.xmax 3.2 # default= 2.5 rmax(a.u.)=exp(grid.xmax) grid.num 12000 # default=4000 grid.num.output 500 # default=2000 # # SCF # scf.maxIter 60 # default=40 scf.Mixing.Type Simple # Simple|GR-Pulay scf.Init.Mixing.Weight 0.10 # default=0.300 scf.Min.Mixing.Weight 0.001 # default=0.001 scf.Max.Mixing.Weight 0.400 # default=0.800 scf.Mixing.History 7 # default=5 scf.Mixing.StartPulay 4 # default=6 scf.criterion 1.0e-14 # default=1.0e-9 # # Pseudo potetial, cutoff (A.U.) # vps.type MBK # BHS|TM number.vps 6 Blochl.projector.num 3 # default=1 which means KB-form local.type polynomial # Simple|Polynomial local.part.vps 1 # default=0 local.cutoff 1.60 # default=smallest_cutoff_vps local.origin.ratio 2.00 # default=3.0 log.deri.RadF.calc on # ON|OFF log.deri.MinE -2.0 # default=-3.0 (Hartree) log.deri.MaxE 2.0 # default= 2.0 (Hartree) log.deri.num 100 # default=50 ghost.check off # ON|OFF # # Core electron density for partial core correction # pcc.ratio=rho_core/rho_V, # pcc.ratio.origin = rho_core(orgin)/rho_core(ip) # charge.pcc.calc on # ON|OFF pcc.ratio 0.25 # default=1.0 pcc.ratio.origin 5.5 # default=6.0 # # Pseudo atomic orbitals # maxL.pao 3 # default=2 num.pao 15 # default=7 radial.cutoff.pao 7.0 # default=5.0 (Bohr) height.of.wall 20000.0 # default=4000.0 (Hartree) rising.edge 0.2 # default=0.5(Bohr),r1=rc-rising.edge search.LowerE -3.000 # default=-3.000 (Hartree) search.UpperE 60.000 # default=20.000 (Hartree) num.of.partition 3200 # default=300 matching.point.ratio 0.67 # default=0.67 ***************************************************** SCF history in all electron calculations ***************************************************** ***************************************************** Eigenvalues (Hartree) in the all electron calculation ***************************************************** j=l+1/2 j=l-1/2 n= 1 l= 0 -844.8923469310364 -844.8923469310364 n= 2 l= 0 -122.4032820583031 -122.4032820583031 n= 2 l= 1 -108.0465421053647 -113.3475743610731 n= 3 l= 0 -21.8606361311471 -21.8606361311471 n= 3 l= 1 -17.4009089159752 -18.3124931753389 n= 3 l= 2 -10.9282152979567 -11.1077700057836 n= 4 l= 0 -3.0199037673167 -3.0199037673167 n= 4 l= 1 -1.8011274599688 -1.9437315445207 n= 4 l= 2 -0.2106490843995 -0.2249220560884 n= 5 l= 0 -0.1580018180230 -0.1580018180230 ***************************************************** Energies (Hartree) in the all electron calculation ***************************************************** Eeigen = -2878.9896833610069 Ekin = 5003.9047116890115 EHart = 1952.8682593844233 Exc = -138.4261260643571 Eec = -11608.8186639090673 Etot = Ekin + EHart + Exc + Eec Etot = -4790.4718188999896 *********************************************************** ** DATA for factorized norm conserving pseudo potentials ** *********************************************************** j.dependent.pseudo.potentials on L=0, dif of log deris for all electrons = 8.6073076639 8.6073076639 L=0, dif of log deris for semi local = 2613.3425775669 2613.3425775669 L=1, dif of log deris for all electrons = 123897.6925145810 178334.7304540316 L=1, dif of log deris for semi local = 79976.3312620669 4248.9624810978 L=2, dif of log deris for all electrons = 0.0053532988 101.9291969182 L=2, dif of log deris for semi local = 0.0037739992 75.7796637142 L=3, dif of log deris for all electrons = 1.4713130513 1.8520727046 L=3, dif of log deris for semi local = 1.2218816351 1.4196757969 *********************************************************** ** Core electron densities for PCC ** ***********************************************************