vasp.6.2.1 16May21 (build Apr 11 2022 11:03:26) complex MD_VERSION_INFO: Compiled 2022-04-11T18:25:55-UTC in devlin.sd.materialsdesign. com:/home/medea2/data/build/vasp6.2.1/16685/x86_64/src/src/build/gpu from svn 1 6685 This VASP executable licensed from Materials Design, Inc. executed on Lin64 date 2024.09.07 23:11:19 running on 1 total cores distrk: each k-point on 1 cores, 1 groups distr: one band on NCORE= 1 cores, 1 groups -------------------------------------------------------------------------------------------------------- INCAR: SYSTEM = No title PREC = Normal ENCUT = 400.000 IBRION = -1 NSW = 0 ISIF = 2 NELMIN = 2 EDIFF = 1.0e-05 EDIFFG = -0.02 VOSKOWN = 1 NBLOCK = 1 NWRITE = 1 NELM = 60 ALGO = Normal (blocked Davidson) ISPIN = 2 INIWAV = 1 ISTART = 0 ICHARG = 2 LWAVE = .FALSE. LCHARG = .FALSE. ADDGRID = .FALSE. ISMEAR = 1 SIGMA = 0.2 LREAL = Auto LSCALAPACK = .FALSE. RWIGS = 1.11 0.77 0.75 0.73 0.32 POTCAR: PAW_PBE Si 05Jan2001 POTCAR: PAW_PBE C 08Apr2002 POTCAR: PAW_PBE N 08Apr2002 POTCAR: PAW_PBE O 08Apr2002 POTCAR: PAW_PBE H 15Jun2001 ----------------------------------------------------------------------------- | | | W W AA RRRRR N N II N N GGGG !!! | | W W A A R R NN N II NN N G G !!! | | W W A A R R N N N II N N N G !!! | | W WW W AAAAAA RRRRR N N N II N N N G GGG ! | | WW WW A A R R N NN II N NN G G | | W W A A R R N N II N N GGGG !!! | | | | You use a magnetic or noncollinear calculation, but did not specify | | the initial magnetic moment with the MAGMOM tag. Note that a | | default of 1 will be used for all atoms. This ferromagnetic setup | | may break the symmetry of the crystal, in particular it may rule | | out finding an antiferromagnetic solution. Thence, we recommend | | setting the initial magnetic moment manually or verifying carefully | | that this magnetic setup is desired. | | | ----------------------------------------------------------------------------- POTCAR: PAW_PBE Si 05Jan2001 local pseudopotential read in partial core-charges read in partial kinetic energy density read in atomic valenz-charges read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in PAW grid and wavefunctions read in number of l-projection operators is LMAX = 4 number of lm-projection operators is LMMAX = 8 POTCAR: PAW_PBE C 08Apr2002 local pseudopotential read in partial core-charges read in partial kinetic energy density read in atomic valenz-charges read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in PAW grid and wavefunctions read in number of l-projection operators is LMAX = 4 number of lm-projection operators is LMMAX = 8 POTCAR: PAW_PBE N 08Apr2002 local pseudopotential read in partial core-charges read in partial kinetic energy density read in atomic valenz-charges read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in PAW grid and wavefunctions read in number of l-projection operators is LMAX = 4 number of lm-projection operators is LMMAX = 8 POTCAR: PAW_PBE O 08Apr2002 local pseudopotential read in partial core-charges read in partial kinetic energy density read in kinetic energy density of atom read in atomic valenz-charges read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in PAW grid and wavefunctions read in number of l-projection operators is LMAX = 4 number of lm-projection operators is LMMAX = 8 POTCAR: PAW_PBE H 15Jun2001 local pseudopotential read in atomic valenz-charges read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 0 read in real space projection operators read in non local Contribution for L= 1 read in real space projection operators read in PAW grid and wavefunctions read in number of l-projection operators is LMAX = 3 number of lm-projection operators is LMMAX = 5 Optimization of the real space projectors (new method) maximal supplied QI-value = 19.84 optimisation between [QCUT,QGAM] = [ 10.12, 20.44] = [ 28.68,116.96] Ry Optimized for a Real-space Cutoff 1.23 Angstroem l n(q) QCUT max X(q) W(low)/X(q) W(high)/X(q) e(spline) 0 7 10.119 159.560 0.56E-04 0.22E-03 0.45E-07 0 7 10.119 115.863 0.56E-04 0.21E-03 0.45E-07 1 7 10.119 88.339 0.34E-03 0.49E-03 0.11E-06 1 7 10.119 48.592 0.33E-03 0.48E-03 0.11E-06 Optimization of the real space projectors (new method) maximal supplied QI-value = 25.13 optimisation between [QCUT,QGAM] = [ 10.05, 20.36] = [ 28.30,116.06] Ry Optimized for a Real-space Cutoff 1.30 Angstroem l n(q) QCUT max X(q) W(low)/X(q) W(high)/X(q) e(spline) 0 8 10.053 115.676 0.49E-03 0.72E-03 0.18E-06 0 8 10.053 87.132 0.49E-03 0.71E-03 0.18E-06 1 7 10.053 4.429 0.32E-03 0.31E-03 0.18E-06 1 7 10.053 2.733 0.23E-03 0.19E-03 0.20E-06 Optimization of the real space projectors (new method) maximal supplied QI-value = 25.13 optimisation between [QCUT,QGAM] = [ 10.05, 20.36] = [ 28.30,116.06] Ry Optimized for a Real-space Cutoff 1.65 Angstroem l n(q) QCUT max X(q) W(low)/X(q) W(high)/X(q) e(spline) 0 10 10.053 79.467 0.76E-04 0.72E-04 0.56E-06 0 10 10.053 66.151 0.76E-04 0.72E-04 0.55E-06 1 10 10.053 8.350 0.25E-03 0.92E-03 0.41E-05 1 10 10.053 5.531 0.27E-03 0.10E-02 0.45E-05 Optimization of the real space projectors (new method) maximal supplied QI-value = 24.76 optimisation between [QCUT,QGAM] = [ 10.15, 20.30] = [ 28.85,115.39] Ry Optimized for a Real-space Cutoff 1.38 Angstroem l n(q) QCUT max X(q) W(low)/X(q) W(high)/X(q) e(spline) 0 8 10.150 20.381 0.22E-03 0.32E-03 0.29E-06 0 8 10.150 15.268 0.23E-03 0.35E-03 0.30E-06 1 8 10.150 5.964 0.46E-03 0.53E-03 0.21E-06 1 8 10.150 5.382 0.38E-03 0.45E-03 0.19E-06 Optimization of the real space projectors (new method) maximal supplied QI-value = 34.20 optimisation between [QCUT,QGAM] = [ 9.92, 20.18] = [ 27.55,114.04] Ry Optimized for a Real-space Cutoff 1.26 Angstroem l n(q) QCUT max X(q) W(low)/X(q) W(high)/X(q) e(spline) 0 8 9.919 19.460 0.50E-03 0.23E-03 0.29E-06 0 8 9.919 12.209 0.48E-03 0.23E-03 0.28E-06 1 7 9.919 4.655 0.17E-03 0.75E-03 0.30E-06 PAW_PBE Si 05Jan2001 : energy of atom 1 EATOM= -103.0669 kinetic energy error for atom= 0.0012 (will be added to EATOM!!) PAW_PBE C 08Apr2002 : energy of atom 2 EATOM= -147.1560 kinetic energy error for atom= 0.0288 (will be added to EATOM!!) PAW_PBE N 08Apr2002 : energy of atom 3 EATOM= -264.5486 kinetic energy error for atom= 0.0736 (will be added to EATOM!!) PAW_PBE O 08Apr2002 : energy of atom 4 EATOM= -432.3788 kinetic energy error for atom= 0.1156 (will be added to EATOM!!) PAW_PBE H 15Jun2001 : energy of atom 5 EATOM= -12.4884 kinetic energy error for atom= 0.0098 (will be added to EATOM!!) POSCAR: No title positions in direct lattice No initial velocities read in exchange correlation table for LEXCH = 8 RHO(1)= 0.500 N(1) = 2000 RHO(2)= 100.500 N(2) = 4000 -------------------------------------------------------------------------------------------------------- ion position nearest neighbor table 1 0.306 0.504 0.554- 14 1.65 11 1.71 3 1.87 4 1.89 2 2.57 2 0.477 0.493 0.578- 13 1.56 4 1.87 3 1.89 1 2.57 3 0.381 0.471 0.700- 17 1.09 16 1.10 1 1.87 2 1.89 4 0.401 0.516 0.431- 19 1.08 18 1.09 2 1.87 1 1.89 5 0.540 0.726 0.685- 22 1.07 21 1.07 20 1.07 13 1.38 6 0.196 0.691 0.654- 24 1.09 23 1.10 25 1.10 14 1.42 7 0.573 0.237 0.351- 28 1.05 26 1.07 27 1.08 12 1.36 8 0.562 0.141 0.560- 31 1.05 29 1.07 30 1.07 12 1.37 9 0.193 0.294 0.631- 32 1.09 33 1.10 34 1.11 11 1.45 10 0.190 0.360 0.398- 36 1.10 35 1.10 37 1.10 11 1.45 11 0.232 0.377 0.528- 10 1.45 9 1.45 1 1.71 12 0.569 0.256 0.485- 7 1.36 8 1.37 13 0.531 0.625 0.591- 5 1.38 2 1.56 14 0.262 0.655 0.559- 6 1.42 1 1.65 15 0.633 0.452 0.684- 38 1.13 16 0.378 0.547 0.779- 3 1.10 17 0.377 0.373 0.746- 3 1.09 18 0.408 0.611 0.379- 4 1.09 19 0.403 0.436 0.359- 4 1.08 20 0.488 0.797 0.665- 5 1.07 21 0.605 0.771 0.674- 5 1.07 22 0.528 0.688 0.783- 5 1.07 23 0.221 0.680 0.757- 6 1.10 24 0.179 0.796 0.638- 6 1.09 25 0.135 0.630 0.645- 6 1.10 26 0.628 0.297 0.316- 7 1.07 27 0.518 0.288 0.305- 7 1.08 28 0.576 0.145 0.299- 7 1.05 29 0.502 0.154 0.616- 8 1.07 30 0.612 0.141 0.637- 8 1.07 31 0.562 0.042 0.524- 8 1.05 32 0.227 0.309 0.726- 9 1.09 33 0.198 0.187 0.605- 9 1.10 34 0.121 0.315 0.646- 9 1.11 35 0.195 0.255 0.365- 10 1.10 36 0.224 0.423 0.324- 10 1.10 37 0.119 0.387 0.400- 10 1.10 38 0.610 0.406 0.586- 15 1.13 39 0.699 0.290 0.579- LATTYP: Found a simple tetragonal cell. ALAT = 10.0000000000 C/A-ratio = 1.5000000000 Lattice vectors: A1 = ( 0.0000000000, 10.0000000000, 0.0000000000) A2 = ( 0.0000000000, 0.0000000000, 10.0000000000) A3 = ( 15.0000000000, 0.0000000000, 0.0000000000) Analysis of symmetry for initial positions (statically): ===================================================================== Subroutine PRICEL returns: Original cell was already a primitive cell. Routine SETGRP: Setting up the symmetry group for a simple tetragonal supercell. Subroutine GETGRP returns: Found 1 space group operations (whereof 1 operations were pure point group operations) out of a pool of 16 trial point group operations. The static configuration has the point symmetry C_1 . Analysis of symmetry for dynamics (positions and initial velocities): ===================================================================== Subroutine PRICEL returns: Original cell was already a primitive cell. Routine SETGRP: Setting up the symmetry group for a simple tetragonal supercell. Subroutine GETGRP returns: Found 1 space group operations (whereof 1 operations were pure point group operations) out of a pool of 16 trial point group operations. The dynamic configuration has the point symmetry C_1 . Analysis of structural, dynamic, and magnetic symmetry: ===================================================================== Subroutine PRICEL returns: Original cell was already a primitive cell. Routine SETGRP: Setting up the symmetry group for a simple tetragonal supercell. Subroutine GETGRP returns: Found 1 space group operations (whereof 1 operations were pure point group operations) out of a pool of 16 trial point group operations. The overall configuration has the point symmetry C_1 . Subroutine INISYM returns: Found 1 space group operations (whereof 1 operations are pure point group operations), and found 1 'primitive' translations ---------------------------------------------------------------------------------------- Primitive cell volume of cell : 1500.0000 direct lattice vectors reciprocal lattice vectors 15.000000000 0.000000000 0.000000000 0.066666667 0.000000000 0.000000000 0.000000000 10.000000000 0.000000000 0.000000000 0.100000000 0.000000000 0.000000000 0.000000000 10.000000000 0.000000000 0.000000000 0.100000000 length of vectors 15.000000000 10.000000000 10.000000000 0.066666667 0.100000000 0.100000000 position of ions in fractional coordinates (direct lattice) 0.305804460 0.503802550 0.554360860 0.476541650 0.493025000 0.578048950 0.380879100 0.471418900 0.699862630 0.400526640 0.515824640 0.430987630 0.540443610 0.726388470 0.684921040 0.196203460 0.690840340 0.654416300 0.573415230 0.237181010 0.350500780 0.561936900 0.141328620 0.559833130 0.192683060 0.293691440 0.630809840 0.190135210 0.360173640 0.398371320 0.231738020 0.376897390 0.527871910 0.568796510 0.255529470 0.485227820 0.531392680 0.625459950 0.591469700 0.261879060 0.654916780 0.558649820 0.632949090 0.451942630 0.683886000 0.377979510 0.546737660 0.779442010 0.376546190 0.373147720 0.745889370 0.408104550 0.611396460 0.379406190 0.402702910 0.435978460 0.358504420 0.487930820 0.796755990 0.665326990 0.604755020 0.771364830 0.673662180 0.527939450 0.688105230 0.782824620 0.221439760 0.680296850 0.757133650 0.179294760 0.795859870 0.637655010 0.135258650 0.630359620 0.644841340 0.628464340 0.296618320 0.316450220 0.517870420 0.287543100 0.304839900 0.575673240 0.145418280 0.298842000 0.501836300 0.154008240 0.616313140 0.611540730 0.141092130 0.637000430 0.562363290 0.042291330 0.523965480 0.227020610 0.309407150 0.726000030 0.198364850 0.186862640 0.604794510 0.121093870 0.314751260 0.646409770 0.194713650 0.255398980 0.365096860 0.223610320 0.422949530 0.323797390 0.118823370 0.387058780 0.400235030 0.610084660 0.406327310 0.586398290 0.698923470 0.289907530 0.578581430 ion indices of the primitive-cell ions primitive index ion index 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 ---------------------------------------------------------------------------------------- KPOINTS: Automatic mesh Automatic generation of k-mesh. Grid dimensions read from file: generate k-points for: 2 3 3 Generating k-lattice: Cartesian coordinates Fractional coordinates (reciprocal lattice) 0.033333333 0.000000000 0.000000000 0.500000000 0.000000000 0.000000000 0.000000000 0.033333333 0.000000000 0.000000000 0.333333333 0.000000000 0.000000000 0.000000000 0.033333333 0.000000000 0.000000000 0.333333333 Length of vectors 0.033333333 0.033333333 0.033333333 Shift w.r.t. Gamma in fractional coordinates (k-lattice) 0.000000000 0.000000000 0.000000000 Subroutine IBZKPT returns following result: =========================================== Found 10 irreducible k-points: Following reciprocal coordinates: Coordinates Weight 0.000000 0.000000 0.000000 1.000000 0.500000 0.000000 0.000000 1.000000 0.000000 0.333333 0.000000 2.000000 0.000000 0.000000 0.333333 2.000000 0.500000 0.333333 0.000000 2.000000 0.500000 0.000000 0.333333 2.000000 0.000000 0.333333 0.333333 2.000000 0.000000 -0.333333 0.333333 2.000000 0.500000 0.333333 0.333333 2.000000 0.500000 -0.333333 0.333333 2.000000 Following cartesian coordinates: Coordinates Weight 0.000000 0.000000 0.000000 1.000000 0.033333 0.000000 0.000000 1.000000 0.000000 0.033333 0.000000 2.000000 0.000000 0.000000 0.033333 2.000000 0.033333 0.033333 0.000000 2.000000 0.033333 0.000000 0.033333 2.000000 0.000000 0.033333 0.033333 2.000000 0.000000 -0.033333 0.033333 2.000000 0.033333 0.033333 0.033333 2.000000 0.033333 -0.033333 0.033333 2.000000 -------------------------------------------------------------------------------------------------------- Dimension of arrays: k-points NKPTS = 10 k-points in BZ NKDIM = 10 number of bands NBANDS= 86 number of dos NEDOS = 301 number of ions NIONS = 39 non local maximal LDIM = 4 non local SUM 2l+1 LMDIM = 8 total plane-waves NPLWV = 200000 max r-space proj IRMAX = 2551 max aug-charges IRDMAX= 4657 dimension x,y,z NGX = 80 NGY = 50 NGZ = 50 dimension x,y,z NGXF= 160 NGYF= 100 NGZF= 100 support grid NGXF= 160 NGYF= 100 NGZF= 100 ions per type = 2 8 2 3 24 NGX,Y,Z is equivalent to a cutoff of 8.87, 8.31, 8.31 a.u. NGXF,Y,Z is equivalent to a cutoff of 17.73, 16.62, 16.62 a.u. SYSTEM = No title POSCAR = No title Startparameter for this run: NWRITE = 1 write-flag & timer PREC = normal normal or accurate (medium, high low for compatibility) ISTART = 0 job : 0-new 1-cont 2-samecut ICHARG = 2 charge: 1-file 2-atom 10-const ISPIN = 2 spin polarized calculation? LNONCOLLINEAR = F non collinear calculations LSORBIT = F spin-orbit coupling INIWAV = 1 electr: 0-lowe 1-rand 2-diag LASPH = F aspherical Exc in radial PAW Electronic Relaxation 1 ENCUT = 400.0 eV 29.40 Ry 5.42 a.u. 24.46 16.31 16.31*2*pi/ulx,y,z ENINI = 400.0 initial cutoff ENAUG = 644.9 eV augmentation charge cutoff NELM = 60; NELMIN= 2; NELMDL= -5 # of ELM steps EDIFF = 0.1E-04 stopping-criterion for ELM LREAL = T real-space projection NLSPLINE = F spline interpolate recip. space projectors LCOMPAT= F compatible to vasp.4.4 GGA_COMPAT = T GGA compatible to vasp.4.4-vasp.4.6 LMAXPAW = -100 max onsite density LMAXMIX = 2 max onsite mixed and CHGCAR VOSKOWN= 1 Vosko Wilk Nusair interpolation ROPT = -0.00050 -0.00050 -0.00050 -0.00050 ROPT = -0.00050 Ionic relaxation EDIFFG = -.2E-01 stopping-criterion for IOM NSW = 0 number of steps for IOM NBLOCK = 1; KBLOCK = 1 inner block; outer block IBRION = -1 ionic relax: 0-MD 1-quasi-New 2-CG NFREE = 0 steps in history (QN), initial steepest desc. (CG) ISIF = 2 stress and relaxation IWAVPR = 10 prediction: 0-non 1-charg 2-wave 3-comb ISYM = 2 0-nonsym 1-usesym 2-fastsym LCORR = T Harris-Foulkes like correction to forces POTIM = 0.5000 time-step for ionic-motion TEIN = 0.0 initial temperature TEBEG = 0.0; TEEND = 0.0 temperature during run SMASS = -3.00 Nose mass-parameter (am) estimated Nose-frequenzy (Omega) = 0.10E-29 period in steps = 0.13E+47 mass= -0.514E-26a.u. SCALEE = 1.0000 scale energy and forces NPACO = 256; APACO = 16.0 distance and # of slots for P.C. PSTRESS= 0.0 pullay stress Mass of Ions in am POMASS = 28.09 12.01 14.00 16.00 1.00 Ionic Valenz ZVAL = 4.00 4.00 5.00 6.00 1.00 Atomic Wigner-Seitz radii RWIGS = 1.11 0.77 0.75 0.73 0.32 virtual crystal weights VCA = 1.00 1.00 1.00 1.00 1.00 NELECT = 92.0000 total number of electrons NUPDOWN= -1.0000 fix difference up-down DOS related values: EMIN = 10.00; EMAX =-10.00 energy-range for DOS EFERMI = 0.00 ISMEAR = 1; SIGMA = 0.20 broadening in eV -4-tet -1-fermi 0-gaus Electronic relaxation 2 (details) IALGO = 38 algorithm LDIAG = T sub-space diagonalisation (order eigenvalues) LSUBROT= F optimize rotation matrix (better conditioning) TURBO = 0 0=normal 1=particle mesh IRESTART = 0 0=no restart 2=restart with 2 vectors NREBOOT = 0 no. of reboots NMIN = 0 reboot dimension EREF = 0.00 reference energy to select bands IMIX = 4 mixing-type and parameters AMIX = 0.40; BMIX = 1.00 AMIX_MAG = 1.60; BMIX_MAG = 1.00 AMIN = 0.10 WC = 100.; INIMIX= 1; MIXPRE= 1; MAXMIX= -45 Intra band minimization: WEIMIN = 0.0000 energy-eigenvalue tresh-hold EBREAK = 0.29E-07 absolut break condition DEPER = 0.30 relativ break condition TIME = 0.40 timestep for ELM volume/ion in A,a.u. = 38.46 259.55 Fermi-wavevector in a.u.,A,eV,Ry = 0.645615 1.220036 5.671165 0.416819 Thomas-Fermi vector in A = 1.713329 Write flags LWAVE = F write WAVECAR LDOWNSAMPLE = F k-point downsampling of WAVECAR LCHARG = F write CHGCAR LVTOT = F write LOCPOT, total local potential LVHAR = F write LOCPOT, Hartree potential only LELF = F write electronic localiz. function (ELF) LORBIT = 0 0 simple, 1 ext, 2 COOP (PROOUT), +10 PAW based schemes Dipole corrections LMONO = F monopole corrections only (constant potential shift) LDIPOL = F correct potential (dipole corrections) IDIPOL = 0 1-x, 2-y, 3-z, 4-all directions EPSILON= 1.0000000 bulk dielectric constant Exchange correlation treatment: GGA = -- GGA type LEXCH = 8 internal setting for exchange type VOSKOWN= 1 Vosko Wilk Nusair interpolation LHFCALC = F Hartree Fock is set to LHFONE = F Hartree Fock one center treatment AEXX = 0.0000 exact exchange contribution Linear response parameters LEPSILON= F determine dielectric tensor LRPA = F only Hartree local field effects (RPA) LNABLA = F use nabla operator in PAW spheres LVEL = F velocity operator in full k-point grid LINTERFAST= F fast interpolation KINTER = 0 interpolate to denser k-point grid CSHIFT =0.1000 complex shift for real part using Kramers Kronig OMEGAMAX= -1.0 maximum frequency DEG_THRESHOLD= 0.2000000E-02 threshold for treating states as degnerate RTIME = -0.100 relaxation time in fs (WPLASMAI= 0.000 imaginary part of plasma frequency in eV, 0.658/RTIME) DFIELD = 0.0000000 0.0000000 0.0000000 field for delta impulse in time Orbital magnetization related: ORBITALMAG= F switch on orbital magnetization LCHIMAG = F perturbation theory with respect to B field DQ = 0.001000 dq finite difference perturbation B field LLRAUG = F two centre corrections for induced B field -------------------------------------------------------------------------------------------------------- Static calculation charge density and potential will be updated during run spin polarized calculation Variant of blocked Davidson Davidson routine will perform the subspace rotation perform sub-space diagonalisation after iterative eigenvector-optimisation modified Broyden-mixing scheme, WC = 100.0 initial mixing is a Kerker type mixing with AMIX = 0.4000 and BMIX = 1.0000 Hartree-type preconditioning will be used using additional bands 40 real space projection scheme for non local part use partial core corrections calculate Harris-corrections to forces (improved forces if not selfconsistent) use gradient corrections use of overlap-Matrix (Vanderbilt PP) Methfessel and Paxton Order N= 1 SIGMA = 0.20 -------------------------------------------------------------------------------------------------------- energy-cutoff : 400.00 volume of cell : 1500.00 direct lattice vectors reciprocal lattice vectors 15.000000000 0.000000000 0.000000000 0.066666667 0.000000000 0.000000000 0.000000000 10.000000000 0.000000000 0.000000000 0.100000000 0.000000000 0.000000000 0.000000000 10.000000000 0.000000000 0.000000000 0.100000000 length of vectors 15.000000000 10.000000000 10.000000000 0.066666667 0.100000000 0.100000000 k-points in units of 2pi/SCALE and weight: Automatic mesh 0.00000000 0.00000000 0.00000000 0.056 0.03333333 0.00000000 0.00000000 0.056 0.00000000 0.03333333 0.00000000 0.111 0.00000000 0.00000000 0.03333333 0.111 0.03333333 0.03333333 0.00000000 0.111 0.03333333 0.00000000 0.03333333 0.111 0.00000000 0.03333333 0.03333333 0.111 0.00000000 -0.03333333 0.03333333 0.111 0.03333333 0.03333333 0.03333333 0.111 0.03333333 -0.03333333 0.03333333 0.111 k-points in reciprocal lattice and weights: Automatic mesh 0.00000000 0.00000000 0.00000000 0.056 0.50000000 0.00000000 0.00000000 0.056 0.00000000 0.33333333 0.00000000 0.111 0.00000000 0.00000000 0.33333333 0.111 0.50000000 0.33333333 0.00000000 0.111 0.50000000 0.00000000 0.33333333 0.111 0.00000000 0.33333333 0.33333333 0.111 0.00000000 -0.33333333 0.33333333 0.111 0.50000000 0.33333333 0.33333333 0.111 0.50000000 -0.33333333 0.33333333 0.111 position of ions in fractional coordinates (direct lattice) 0.30580446 0.50380255 0.55436086 0.47654165 0.49302500 0.57804895 0.38087910 0.47141890 0.69986263 0.40052664 0.51582464 0.43098763 0.54044361 0.72638847 0.68492104 0.19620346 0.69084034 0.65441630 0.57341523 0.23718101 0.35050078 0.56193690 0.14132862 0.55983313 0.19268306 0.29369144 0.63080984 0.19013521 0.36017364 0.39837132 0.23173802 0.37689739 0.52787191 0.56879651 0.25552947 0.48522782 0.53139268 0.62545995 0.59146970 0.26187906 0.65491678 0.55864982 0.63294909 0.45194263 0.68388600 0.37797951 0.54673766 0.77944201 0.37654619 0.37314772 0.74588937 0.40810455 0.61139646 0.37940619 0.40270291 0.43597846 0.35850442 0.48793082 0.79675599 0.66532699 0.60475502 0.77136483 0.67366218 0.52793945 0.68810523 0.78282462 0.22143976 0.68029685 0.75713365 0.17929476 0.79585987 0.63765501 0.13525865 0.63035962 0.64484134 0.62846434 0.29661832 0.31645022 0.51787042 0.28754310 0.30483990 0.57567324 0.14541828 0.29884200 0.50183630 0.15400824 0.61631314 0.61154073 0.14109213 0.63700043 0.56236329 0.04229133 0.52396548 0.22702061 0.30940715 0.72600003 0.19836485 0.18686264 0.60479451 0.12109387 0.31475126 0.64640977 0.19471365 0.25539898 0.36509686 0.22361032 0.42294953 0.32379739 0.11882337 0.38705878 0.40023503 0.61008466 0.40632731 0.58639829 0.69892347 0.28990753 0.57858143 position of ions in cartesian coordinates (Angst): 4.58706690 5.03802550 5.54360860 7.14812475 4.93025000 5.78048950 5.71318650 4.71418900 6.99862630 6.00789960 5.15824640 4.30987630 8.10665415 7.26388470 6.84921040 2.94305190 6.90840340 6.54416300 8.60122845 2.37181010 3.50500780 8.42905350 1.41328620 5.59833130 2.89024590 2.93691440 6.30809840 2.85202815 3.60173640 3.98371320 3.47607030 3.76897390 5.27871910 8.53194765 2.55529470 4.85227820 7.97089020 6.25459950 5.91469700 3.92818590 6.54916780 5.58649820 9.49423635 4.51942630 6.83886000 5.66969265 5.46737660 7.79442010 5.64819285 3.73147720 7.45889370 6.12156825 6.11396460 3.79406190 6.04054365 4.35978460 3.58504420 7.31896230 7.96755990 6.65326990 9.07132530 7.71364830 6.73662180 7.91909175 6.88105230 7.82824620 3.32159640 6.80296850 7.57133650 2.68942140 7.95859870 6.37655010 2.02887975 6.30359620 6.44841340 9.42696510 2.96618320 3.16450220 7.76805630 2.87543100 3.04839900 8.63509860 1.45418280 2.98842000 7.52754450 1.54008240 6.16313140 9.17311095 1.41092130 6.37000430 8.43544935 0.42291330 5.23965480 3.40530915 3.09407150 7.26000030 2.97547275 1.86862640 6.04794510 1.81640805 3.14751260 6.46409770 2.92070475 2.55398980 3.65096860 3.35415480 4.22949530 3.23797390 1.78235055 3.87058780 4.00235030 9.15126990 4.06327310 5.86398290 10.48385205 2.89907530 5.78581430 -------------------------------------------------------------------------------------------------------- k-point 1 : 0.0000 0.0000 0.0000 plane waves: 27261 k-point 2 : 0.5000 0.0000 0.0000 plane waves: 27144 k-point 3 : 0.0000 0.3333 0.0000 plane waves: 27324 k-point 4 : 0.0000 0.0000 0.3333 plane waves: 27324 k-point 5 : 0.5000 0.3333 0.0000 plane waves: 27282 k-point 6 : 0.5000 0.0000 0.3333 plane waves: 27282 k-point 7 : 0.0000 0.3333 0.3333 plane waves: 27227 k-point 8 : 0.0000-0.3333 0.3333 plane waves: 27227 k-point 9 : 0.5000 0.3333 0.3333 plane waves: 27196 k-point 10 : 0.5000-0.3333 0.3333 plane waves: 27196 maximum and minimum number of plane-waves per node : 27324 27144 maximum number of plane-waves: 27324 maximum index in each direction: IXMAX= 24 IYMAX= 16 IZMAX= 16 IXMIN= -24 IYMIN= -16 IZMIN= -16 The following grids will avoid any aliasing or wrap around errors in the Hartre e energy - symmetry arguments have not been applied - exchange correlation energies might require even more grid points - we recommend to set PREC=Normal or Accurate and rely on VASP defaults WARNING: aliasing errors must be expected set NGX to 98 to avoid them WARNING: aliasing errors must be expected set NGY to 70 to avoid them WARNING: aliasing errors must be expected set NGZ to 70 to avoid them serial 3D FFT for wavefunctions parallel 3D FFT for charge: minimum data exchange during FFTs selected (reduces bandwidth) total amount of memory used by VASP MPI-rank0 1033972. kBytes ======================================================================= base : 30000. kBytes nonlr-proj: 4276. kBytes fftplans : 55552. kBytes grid : 185344. kBytes one-center: 239. kBytes wavefun : 758561. kBytes Broyden mixing: mesh for mixing (old mesh) NGX = 49 NGY = 33 NGZ = 33 (NGX =160 NGY =100 NGZ =100) gives a total of 53361 points initial charge density was supplied: charge density of overlapping atoms calculated number of electron 92.0000000 magnetization 39.0000000 keeping initial charge density in first step -------------------------------------------------------------------------------------------------------- Maximum index for non-local projection operator 2430 Maximum index for augmentation-charges 4324 (set IRDMAX) -------------------------------------------------------------------------------------------------------- First call to EWALD: gamma= 0.155 Maximum number of real-space cells 2x 3x 3 Maximum number of reciprocal cells 3x 2x 2 ----------------------------------------- Iteration 1( 1) --------------------------------------- eigenvalue-minimisations : 3752 total energy-change (2. order) : 0.6306203E+03 (-0.2776341E+04) number of electron 92.0000000 magnetization 39.0000000 augmentation part 92.0000000 magnetization 39.0000000 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6037.32300473 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 276.44598625 PAW double counting = 2535.09324019 -2512.33111915 entropy T*S EENTRO = 0.00008858 eigenvalues EBANDS = -575.42369888 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = 630.62032472 eV energy without entropy = 630.62023614 energy(sigma->0) = 630.62029519 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 2) --------------------------------------- eigenvalue-minimisations : 5148 total energy-change (2. order) :-0.6661707E+03 (-0.6284251E+03) number of electron 92.0000000 magnetization 39.0000000 augmentation part 92.0000000 magnetization 39.0000000 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6037.32300473 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 276.44598625 PAW double counting = 2535.09324019 -2512.33111915 entropy T*S EENTRO = 0.00328038 eigenvalues EBANDS = -1241.59757259 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -35.55035720 eV energy without entropy = -35.55363758 energy(sigma->0) = -35.55145066 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 3) --------------------------------------- eigenvalue-minimisations : 4600 total energy-change (2. order) :-0.1396647E+03 (-0.1381228E+03) number of electron 92.0000000 magnetization 39.0000000 augmentation part 92.0000000 magnetization 39.0000000 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6037.32300473 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 276.44598625 PAW double counting = 2535.09324019 -2512.33111915 entropy T*S EENTRO = 0.00604091 eigenvalues EBANDS = -1381.26506662 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -175.21509069 eV energy without entropy = -175.22113161 energy(sigma->0) = -175.21710433 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 4) --------------------------------------- eigenvalue-minimisations : 4592 total energy-change (2. order) :-0.5324505E+01 (-0.5301616E+01) number of electron 92.0000000 magnetization 39.0000000 augmentation part 92.0000000 magnetization 39.0000000 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6037.32300473 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 276.44598625 PAW double counting = 2535.09324019 -2512.33111915 entropy T*S EENTRO = 0.00585611 eigenvalues EBANDS = -1386.58938661 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -180.53959548 eV energy without entropy = -180.54545159 energy(sigma->0) = -180.54154752 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 5) --------------------------------------- eigenvalue-minimisations : 4776 total energy-change (2. order) :-0.1305626E+00 (-0.1304395E+00) number of electron 91.9999875 magnetization 30.1632963 augmentation part 4.0830153 magnetization 28.3119864 Broyden mixing: rms(total) = 0.43146E+01 rms(broyden)= 0.43127E+01 rms(prec ) = 0.46607E+01 weight for this iteration 100.00 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6037.32300473 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 276.44598625 PAW double counting = 2535.09324019 -2512.33111915 entropy T*S EENTRO = 0.00585808 eigenvalues EBANDS = -1386.71995117 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -180.67015808 eV energy without entropy = -180.67601616 energy(sigma->0) = -180.67211077 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 6) --------------------------------------- eigenvalue-minimisations : 4002 total energy-change (2. order) : 0.9532178E+02 (-0.2539748E+02) number of electron 91.9999868 magnetization 24.6035327 augmentation part 3.3308189 magnetization 20.6362040 Broyden mixing: rms(total) = 0.23450E+01 rms(broyden)= 0.23428E+01 rms(prec ) = 0.25524E+01 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 0.8118 0.8118 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6253.54604133 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 369.14859105 PAW double counting = 4387.27897456 -4366.95161467 entropy T*S EENTRO = 0.01602307 eigenvalues EBANDS = -1165.45314702 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -85.34838189 eV energy without entropy = -85.36440496 energy(sigma->0) = -85.35372291 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 7) --------------------------------------- eigenvalue-minimisations : 4370 total energy-change (2. order) :-0.5276980E+02 (-0.5980185E+01) number of electron 91.9999880 magnetization 19.6018536 augmentation part 3.4974443 magnetization 17.4623625 Broyden mixing: rms(total) = 0.16686E+01 rms(broyden)= 0.16667E+01 rms(prec ) = 0.18018E+01 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 0.7921 1.0366 0.5476 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6327.95003544 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 330.04062632 PAW double counting = 5766.51602146 -5746.56330804 entropy T*S EENTRO = 0.00616709 eigenvalues EBANDS = -1104.32648084 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -138.11817699 eV energy without entropy = -138.12434408 energy(sigma->0) = -138.12023269 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 8) --------------------------------------- eigenvalue-minimisations : 4188 total energy-change (2. order) :-0.1540511E+02 (-0.1109480E+01) number of electron 91.9999879 magnetization 12.6309738 augmentation part 3.3682679 magnetization 10.4867656 Broyden mixing: rms(total) = 0.97032E+00 rms(broyden)= 0.96992E+00 rms(prec ) = 0.10447E+01 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 1.0326 1.4272 1.0499 0.6206 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6380.80798305 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 320.40237666 PAW double counting = 6764.22601981 -6744.57386445 entropy T*S EENTRO = 0.00870270 eigenvalues EBANDS = -1056.93736860 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -153.52328447 eV energy without entropy = -153.53198717 energy(sigma->0) = -153.52618537 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 9) --------------------------------------- eigenvalue-minimisations : 4186 total energy-change (2. order) :-0.2253867E+02 (-0.2965279E+01) number of electron 91.9999862 magnetization 11.5887597 augmentation part 3.0597111 magnetization 9.5415582 Broyden mixing: rms(total) = 0.15535E+01 rms(broyden)= 0.15481E+01 rms(prec ) = 0.18460E+01 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 0.8650 1.5133 1.0660 0.5232 0.3574 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6422.43601506 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 307.16029672 PAW double counting = 7848.09867456 -7828.44010229 entropy T*S EENTRO = 0.02054625 eigenvalues EBANDS = -1024.62419063 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -176.06195800 eV energy without entropy = -176.08250425 energy(sigma->0) = -176.06880675 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 10) --------------------------------------- eigenvalue-minimisations : 4344 total energy-change (2. order) :-0.8076463E+00 (-0.8323106E+00) number of electron 91.9999878 magnetization 8.5016194 augmentation part 3.2717925 magnetization 6.4384139 Broyden mixing: rms(total) = 0.45993E+00 rms(broyden)= 0.45107E+00 rms(prec ) = 0.48046E+00 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 0.9577 1.9991 1.2543 0.6290 0.6290 0.2773 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6424.16822303 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 305.30894438 PAW double counting = 7935.38561087 -7915.65524857 entropy T*S EENTRO = 0.00825134 eigenvalues EBANDS = -1021.90777175 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -176.86960430 eV energy without entropy = -176.87785564 energy(sigma->0) = -176.87235475 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 11) --------------------------------------- eigenvalue-minimisations : 3958 total energy-change (2. order) :-0.1122061E+02 (-0.5249346E+00) number of electron 91.9999880 magnetization 6.5702642 augmentation part 3.2977341 magnetization 4.6299683 Broyden mixing: rms(total) = 0.27370E+00 rms(broyden)= 0.27253E+00 rms(prec ) = 0.30200E+00 weight for this iteration 100.00 eigenvalues of (default mixing * dielectric matrix) average eigenvalue GAMMA= 0.9707 2.0143 1.4864 0.7654 0.7654 0.4656 0.3269 Free energy of the ion-electron system (eV) --------------------------------------------------- alpha Z PSCENC = 21.59967643 Ewald energy TEWEN = 3414.18309570 -Hartree energ DENC = -6432.74884237 -exchange EXHF = 0.00000000 -V(xc)+E(xc) XCENC = 297.71808547 PAW double counting = 8139.99555353 -8120.15571816 entropy T*S EENTRO = -0.00325086 eigenvalues EBANDS = -1017.05486971 atomic energy EATOM = 3508.37606032 Solvation Ediel_sol = 0.00000000 --------------------------------------------------- free energy TOTEN = -188.09020965 eV energy without entropy = -188.08695879 energy(sigma->0) = -188.08912603 -------------------------------------------------------------------------------------------------------- ----------------------------------------- Iteration 1( 12) ---------------------------------------