mirror of
https://github.com/pfloos/quack
synced 2025-01-07 03:43:23 +01:00
128 lines
5.4 KiB
Fortran
128 lines
5.4 KiB
Fortran
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! ---
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subroutine print_qsRGTeh(nBas, nOrb, nO, nSCF, Conv, thresh, eHF, eGT, c, SigC, &
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Z, ENuc, ET, EV, EJ, Ex, EcGM, EcRPA, EqsGT, dipole)
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! Print one-electron energies and other stuff for qsGTeh
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implicit none
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include 'parameters.h'
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! Input variables
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integer,intent(in) :: nBas, nOrb
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integer,intent(in) :: nO
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integer,intent(in) :: nSCF
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double precision,intent(in) :: ENuc
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double precision,intent(in) :: ET
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double precision,intent(in) :: EV
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double precision,intent(in) :: EJ
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double precision,intent(in) :: Ex
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double precision,intent(in) :: EcGM
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double precision,intent(in) :: EcRPA(nspin)
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double precision,intent(in) :: Conv
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double precision,intent(in) :: thresh
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double precision,intent(in) :: eHF(nOrb)
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double precision,intent(in) :: eGT(nOrb)
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double precision,intent(in) :: c(nBas,nOrb)
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double precision,intent(in) :: SigC(nOrb,nOrb)
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double precision,intent(in) :: Z(nOrb)
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double precision,intent(in) :: EqsGT
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double precision,intent(in) :: dipole(ncart)
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! Local variables
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logical :: dump_orb = .false.
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integer :: p,ixyz,HOMO,LUMO
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double precision :: Gap
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double precision,external :: trace_matrix
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! Output variables
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! HOMO and LUMO
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HOMO = nO
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LUMO = HOMO + 1
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Gap = eGT(LUMO)-eGT(HOMO)
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! Compute energies
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! Dump results
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write(*,*)'-------------------------------------------------------------------------------'
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if(nSCF < 10) then
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write(*,'(1X,A21,I1,A3,I1,A12)')' Self-consistent qsG',nSCF,'Teh',nSCF,' calculation'
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else
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write(*,'(1X,A21,I2,A3,I2,A12)')' Self-consistent qsG',nSCF,'Teh',nSCF,' calculation'
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end if
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write(*,*)'-------------------------------------------------------------------------------'
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write(*,'(1X,A1,1X,A3,1X,A1,1X,A15,1X,A1,1X,A15,1X,A1,1X,A15,1X,A1,1X,A15,1X,A1,1X)') &
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'|','#','|','e_HF (eV)','|','Sig_GTeh (eV)','|','Z','|','e_GTeh (eV)','|'
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write(*,*)'-------------------------------------------------------------------------------'
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do p=1,nOrb
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write(*,'(1X,A1,1X,I3,1X,A1,1X,F15.6,1X,A1,1X,F15.6,1X,A1,1X,F15.6,1X,A1,1X,F15.6,1X,A1,1X)') &
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'|',p,'|',eHF(p)*HaToeV,'|',SigC(p,p)*HaToeV,'|',Z(p),'|',eGT(p)*HaToeV,'|'
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end do
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write(*,*)'-------------------------------------------------------------------------------'
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write(*,'(2X,A10,I3)') 'Iteration ',nSCF
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write(*,'(2X,A14,F15.5)')'Convergence = ',Conv
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write(*,*)'-------------------------------------------------------------------------------'
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write(*,'(2X,A60,F15.6,A3)') 'qsRGTeh HOMO energy =',eGT(HOMO)*HaToeV,' eV'
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write(*,'(2X,A60,F15.6,A3)') 'qsRGTeh LUMO energy =',eGT(LUMO)*HaToeV,' eV'
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write(*,'(2X,A60,F15.6,A3)') 'qsRGTeh HOMO-LUMO gap =',Gap*HaToeV,' eV'
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write(*,*)'-------------------------------------------------------------------------------'
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write(*,'(2X,A60,F15.6,A3)') ' qsRGTeh total energy =',ENuc + EqsGT,' au'
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write(*,'(2X,A60,F15.6,A3)') ' qsRGTeh exchange energy =',Ex,' au'
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write(*,'(2X,A60,F15.6,A3)') ' GM@qsRGTeh correlation energy =',EcGM,' au'
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write(*,'(2X,A60,F15.6,A3)') 'ppRPA@qsRGTeh correlation energy =',sum(EcRPA),' au'
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write(*,*)'-------------------------------------------------------------------------------'
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write(*,*)
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! Dump results for final iteration
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if(Conv < thresh) then
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write(*,*)
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32)') ' Summary '
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32,1X,F16.10,A3)') ' One-electron energy = ',ET + EV,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Kinetic energy = ',ET,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Potential energy = ',EV,' au'
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32,1X,F16.10,A3)') ' Two-electron energy = ',EJ + Ex,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Hartree energy = ',EJ,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Exchange energy = ',Ex,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Correlation energy = ',EcGM,' au'
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32,1X,F16.10,A3)') ' Electronic energy = ',EqsGT,' au'
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write(*,'(A32,1X,F16.10,A3)') ' Nuclear repulsion = ',ENuc,' au'
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write(*,'(A32,1X,F16.10,A3)') ' qsGTeh energy = ',ENuc + EqsGT,' au'
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A35)') ' Dipole moment (Debye) '
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write(*,'(10X,4A10)') 'X','Y','Z','Tot.'
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write(*,'(10X,4F10.6)') (dipole(ixyz)*auToD,ixyz=1,ncart),norm2(dipole)*auToD
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write(*,'(A50)') '-----------------------------------------'
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write(*,*)
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if(dump_orb) then
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32)') ' qsGTeh MO coefficients'
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write(*,'(A50)') '---------------------------------------'
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call matout(nBas, nOrb, c)
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write(*,*)
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end if
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write(*,'(A50)') '---------------------------------------'
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write(*,'(A32)') ' qsGTeh MO energies'
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write(*,'(A50)') '---------------------------------------'
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call vecout(nOrb, eGT)
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write(*,*)
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end if
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end subroutine
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