mirror of
https://github.com/pfloos/quack
synced 2025-01-09 12:44:04 +01:00
clean up + AC
This commit is contained in:
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c6ec8f91e9
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51016fd5c1
@ -2,14 +2,14 @@
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T F F
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# MP2 MP3 MP2-F12
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F F F
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# CCD CCSD CCSD(T)
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F F T
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# CCD CCSD CCSD(T) ringCCD ladderCCD
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F F F T T
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# CIS RPA TDHF ppRPA ADC
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F T T F F
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F T T T F
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# GF2 GF3
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F F
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# G0W0 evGW qsGW
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F F F
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T F F
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# G0T0 evGT qsGT
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F F F
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# MCMP2
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@ -1,4 +1,4 @@
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subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,XmY,EcAC)
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! Compute the correlation energy via the adiabatic connection formula
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@ -12,6 +12,7 @@ subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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integer,intent(in) :: nBas,nC,nO,nV,nR,nS
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double precision,intent(in) :: ERI(nBas,nBas,nBas,nBas)
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double precision,intent(in) :: XpY(nS,nS)
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double precision,intent(in) :: XmY(nS,nS)
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! Local variables
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@ -20,7 +21,10 @@ subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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double precision :: delta_spin
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double precision :: delta_dRPA
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double precision,allocatable :: P(:,:)
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double precision,allocatable :: V(:,:)
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double precision,allocatable :: Ap(:,:)
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double precision,allocatable :: Bp(:,:)
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double precision,allocatable :: X(:,:)
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double precision,allocatable :: Y(:,:)
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double precision,external :: trace_matrix
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! Output variables
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@ -40,7 +44,7 @@ subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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! Memory allocation
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allocate(P(nS,nS),V(nS,nS))
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allocate(P(nS,nS),Ap(nS,nS),Bp(nS,nS),X(nS,nS),Y(nS,nS))
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! Compute P = (X+Y)(X+Y) - 1
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@ -50,7 +54,7 @@ subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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P(ia,ia) = P(ia,ia) - 1d0
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enddo
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! Compute Viajb = (ia|bj)
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! Compute Aiajb = (ia|bj) and Biajb = (ia|jb)
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ia = 0
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do i=nC+1,nO
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@ -61,16 +65,28 @@ subroutine Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY,EcAC)
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do b=nO+1,nBas-nR
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jb = jb + 1
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V(ia,jb) = (1d0 + delta_spin)*ERI(i,b,a,j)
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Ap(ia,jb) = (1d0 + delta_spin)*ERI(i,b,a,j)
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Bp(ia,jb) = (1d0 + delta_spin)*ERI(i,j,b,a)
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enddo
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enddo
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enddo
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enddo
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! Compute Tr(VP)
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! Compute Tr(A x P)
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EcAC = trace_matrix(nS,matmul(V,P))
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! EcAC = trace_matrix(nS,matmul(Ap,P))
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! print*,'EcAC =',EcAC
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X(:,:) = 0.5d0*(XpY(:,:) + XmY(:,:))
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Y(:,:) = 0.5d0*(XpY(:,:) - XmY(:,:))
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EcAC = trace_matrix(nS,matmul(X,matmul(Bp,transpose(Y))) + matmul(Y,matmul(Bp,transpose(X)))) &
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+ trace_matrix(nS,matmul(X,matmul(Ap,transpose(X))) + matmul(Y,matmul(Ap,transpose(Y)))) &
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- trace_matrix(nS,Ap)
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! print*,'EcAC =',EcAC
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end subroutine Ec_AC
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@ -38,6 +38,7 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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double precision,allocatable :: Z(:)
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double precision,allocatable :: Omega(:,:)
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double precision,allocatable :: XpY(:,:,:)
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double precision,allocatable :: XmY(:,:,:)
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double precision,allocatable :: rho(:,:,:,:)
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double precision,allocatable :: rhox(:,:,:,:)
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@ -79,7 +80,7 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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! Memory allocation
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allocate(SigC(nBas),Z(nBas),Omega(nS,nspin),XpY(nS,nS,nspin), &
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allocate(SigC(nBas),Z(nBas),Omega(nS,nspin),XpY(nS,nS,nspin),XmY(nS,nS,nspin), &
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rho(nBas,nBas,nS,nspin),rhox(nBas,nBas,nS,nspin))
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AC = .true.
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@ -88,7 +89,7 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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! Compute linear response
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call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,1d0,eHF,ERI, &
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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! Compute correlation part of the self-energy
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@ -129,11 +130,11 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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EcBSE(ispin) = 0d0
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call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,1d0,eHF,ERI, &
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,eG0W0,ERI, &
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rho(:,:,:,ispin),EcBSE(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcBSE(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call print_excitation('BSE ',ispin,nS,Omega(:,ispin))
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end if
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@ -146,11 +147,11 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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EcBSE(ispin) = 0d0
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call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,1d0,eHF,ERI, &
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,eG0W0,ERI, &
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rho(:,:,:,ispin),EcBSE(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcBSE(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call print_excitation('BSE ',ispin,nS,Omega(:,ispin))
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end if
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@ -192,13 +193,13 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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lambda = rAC(iAC)
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call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,lambda,eHF,ERI, &
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,eG0W0,ERI, &
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rho(:,:,:,ispin),EcACBSE(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcACBSE(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
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write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACBSE(iAC,ispin),EcAC(iAC,ispin)
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@ -230,13 +231,13 @@ subroutine G0W0(COHSEX,SOSEX,BSE,TDA,singlet_manifold,triplet_manifold,eta, &
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lambda = rAC(iAC)
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call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,lambda,eHF,ERI, &
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,eG0W0,ERI, &
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rho(:,:,:,ispin),EcACBSE(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
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rho(:,:,:,ispin),EcACBSE(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
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write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACBSE(iAC,ispin),EcAC(iAC,ispin)
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@ -7,6 +7,7 @@ program QuAcK
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logical :: doRHF,doUHF,doMOM
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logical :: doMP2,doMP3,doMP2F12
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logical :: doCCD,doCCSD,doCCSDT
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logical :: do_ring_CCD,do_ladder_CCD
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logical :: doCIS,doRPA,doTDHF
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logical :: doppRPA,doADC
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logical :: doGF2,doGF3
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@ -111,6 +112,7 @@ program QuAcK
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call read_methods(doRHF,doUHF,doMOM, &
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doMP2,doMP3,doMP2F12, &
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doCCD,doCCSD,doCCSDT, &
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do_ring_CCD,do_ladder_CCD, &
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doCIS,doRPA,doTDHF, &
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doppRPA,doADC, &
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doGF2,doGF3, &
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@ -351,10 +353,7 @@ program QuAcK
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if(doCCD) then
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call cpu_time(start_CCD)
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! call ring_CCD(maxSCF_CC,thresh_CC,n_diis_CC,nBas,nEl,ERI_MO_basis,ENuc,ERHF,eHF)
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! call ladder_CCD(maxSCF_CC,thresh_CC,n_diis_CC,nBas,nEl,ERI_MO_basis,ENuc,ERHF,eHF)
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call CCD(maxSCF_CC,thresh_CC,n_diis_CC,nBas,nEl,ERI_MO_basis,ENuc,ERHF,eHF)
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call cpu_time(end_CCD)
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t_CCD = end_CCD - start_CCD
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write(*,'(A65,1X,F9.3,A8)') 'Total CPU time for CCD = ',t_CCD,' seconds'
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@ -380,6 +379,38 @@ program QuAcK
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end if
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!------------------------------------------------------------------------
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! Perform ring CCD calculation
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!------------------------------------------------------------------------
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if(do_ring_CCD) then
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call cpu_time(start_CCD)
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call ring_CCD(maxSCF_CC,thresh_CC,n_diis_CC,nBas,nEl,ERI_MO_basis,ENuc,ERHF,eHF)
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call cpu_time(end_CCD)
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t_CCD = end_CCD - start_CCD
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write(*,'(A65,1X,F9.3,A8)') 'Total CPU time for ring CCD = ',t_CCD,' seconds'
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write(*,*)
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end if
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!------------------------------------------------------------------------
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! Perform ladder CCD calculation
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!------------------------------------------------------------------------
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if(do_ladder_CCD) then
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call cpu_time(start_CCD)
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call ladder_CCD(maxSCF_CC,thresh_CC,n_diis_CC,nBas,nEl,ERI_MO_basis,ENuc,ERHF,eHF)
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call cpu_time(end_CCD)
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t_CCD = end_CCD - start_CCD
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write(*,'(A65,1X,F9.3,A8)') 'Total CPU time for CCD = ',t_CCD,' seconds'
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write(*,*)
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end if
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!------------------------------------------------------------------------
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! Compute CIS excitations
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!------------------------------------------------------------------------
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@ -29,6 +29,7 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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integer :: ispin
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double precision,allocatable :: Omega(:,:)
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double precision,allocatable :: XpY(:,:,:)
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double precision,allocatable :: XmY(:,:,:)
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double precision :: rho
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double precision :: EcRPA(nspin)
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@ -65,7 +66,7 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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! Memory allocation
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allocate(Omega(nS,nspin),XpY(nS,nS,nspin))
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allocate(Omega(nS,nspin),XpY(nS,nS,nspin),XmY(nS,nS,nspin))
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AC = .true.
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allocate(EcACRPA(nAC,nspin),EcAC(nAC,nspin))
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@ -77,7 +78,7 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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ispin = 1
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,e,ERI,rho, &
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EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call print_excitation('RPA ',ispin,nS,Omega(:,ispin))
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endif
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@ -89,7 +90,7 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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ispin = 2
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,e,ERI,rho, &
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EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
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EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call print_excitation('RPA ',ispin,nS,Omega(:,ispin))
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endif
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@ -131,9 +132,9 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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lambda = rAC(iAC)
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,rho, &
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EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
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EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
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write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACRPA(iAC,ispin),EcAC(iAC,ispin)
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@ -165,9 +166,9 @@ subroutine RPA(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,E
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lambda = rAC(iAC)
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call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,rho, &
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EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
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EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
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call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
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write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACRPA(iAC,ispin),EcAC(iAC,ispin)
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@ -29,6 +29,7 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
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integer :: ispin
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double precision,allocatable :: Omega(:,:)
|
||||
double precision,allocatable :: XpY(:,:,:)
|
||||
double precision,allocatable :: XmY(:,:,:)
|
||||
|
||||
double precision :: rho
|
||||
double precision :: EcRPA(nspin)
|
||||
@ -65,7 +66,7 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
|
||||
|
||||
! Memory allocation
|
||||
|
||||
allocate(Omega(nS,nspin),XpY(nS,nS,nspin))
|
||||
allocate(Omega(nS,nspin),XpY(nS,nS,nspin),XmY(nS,nS,nspin))
|
||||
|
||||
AC = .true.
|
||||
allocate(EcACRPA(nAC,nspin),EcAC(nAC,nspin))
|
||||
@ -77,7 +78,7 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
|
||||
ispin = 1
|
||||
|
||||
call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,e,ERI,rho, &
|
||||
EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
|
||||
call print_excitation('TDHF ',ispin,nS,Omega(:,ispin))
|
||||
|
||||
endif
|
||||
@ -89,7 +90,7 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
|
||||
ispin = 2
|
||||
|
||||
call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,1d0,e,ERI,rho, &
|
||||
EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
|
||||
call print_excitation('TDHF ',ispin,nS,Omega(:,ispin))
|
||||
|
||||
endif
|
||||
@ -130,14 +131,10 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
|
||||
|
||||
lambda = rAC(iAC)
|
||||
|
||||
! call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,lambda,eHF,ERI, &
|
||||
! rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
! call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
|
||||
|
||||
call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI, &
|
||||
rho,EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
rho,EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
|
||||
|
||||
call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
|
||||
call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
|
||||
|
||||
write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACRPA(iAC,ispin),EcAC(iAC,ispin)
|
||||
|
||||
@ -168,14 +165,10 @@ subroutine TDHF(singlet_manifold,triplet_manifold,nBas,nC,nO,nV,nR,nS,ENuc,ERHF,
|
||||
|
||||
lambda = rAC(iAC)
|
||||
|
||||
! call linear_response(ispin,dRPA,TDA,.false.,nBas,nC,nO,nV,nR,nS,lambda,eHF,ERI, &
|
||||
! rho(:,:,:,ispin),EcRPA(ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
! call excitation_density(nBas,nC,nO,nR,nS,ERI,XpY(:,:,ispin),rho(:,:,:,ispin))
|
||||
|
||||
call linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI, &
|
||||
rho,EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin))
|
||||
rho,EcACRPA(iAC,ispin),Omega(:,ispin),XpY(:,:,ispin),XmY(:,:,ispin))
|
||||
|
||||
call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),EcAC(iAC,ispin))
|
||||
call Ec_AC(ispin,dRPA,nBas,nC,nO,nV,nR,nS,ERI,XpY(:,:,ispin),XmY(:,:,ispin),EcAC(iAC,ispin))
|
||||
|
||||
write(*,'(2X,F15.6,1X,F30.15,1X,F30.15)') lambda,EcACRPA(iAC,ispin),EcAC(iAC,ispin)
|
||||
|
||||
|
@ -182,12 +182,13 @@ subroutine ladder_CCD(maxSCF,thresh,max_diis,nBas,nEl,ERI,ENuc,ERHF,eHF)
|
||||
|
||||
endif
|
||||
|
||||
! Moller-Plesset energies
|
||||
|
||||
write(*,*)
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP2) = ',EcMP2
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP3) = ',EcMP3
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP4-SDQ) = ',EcMP4
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,*)' ladder-CCD energy '
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,'(1X,A30,1X,F15.10)')' E(ladder-CCD) = ',ECCD
|
||||
write(*,'(1X,A30,1X,F10.6)')' Ec(ladder-CCSD) = ',EcCCD
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,*)
|
||||
|
||||
end subroutine ladder_CCD
|
||||
|
@ -1,4 +1,4 @@
|
||||
subroutine linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,rho,EcRPA,Omega,XpY)
|
||||
subroutine linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,rho,EcRPA,Omega,XpY,XmY)
|
||||
|
||||
! Compute linear response
|
||||
|
||||
@ -22,7 +22,9 @@ subroutine linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,r
|
||||
! Output variables
|
||||
|
||||
double precision,intent(out) :: EcRPA
|
||||
double precision,intent(out) :: Omega(nS),XpY(nS,nS)
|
||||
double precision,intent(out) :: Omega(nS)
|
||||
double precision,intent(out) :: XpY(nS,nS)
|
||||
double precision,intent(out) :: XmY(nS,nS)
|
||||
|
||||
|
||||
! Memory allocation
|
||||
@ -83,6 +85,9 @@ subroutine linear_response(ispin,dRPA,TDA,BSE,nBas,nC,nO,nV,nR,nS,lambda,e,ERI,r
|
||||
XpY = matmul(transpose(Z),AmBSq)
|
||||
call DA(nS,1d0/sqrt(abs(Omega)),XpY)
|
||||
|
||||
XmY = matmul(transpose(Z),AmBSq)
|
||||
call DA(nS,sqrt(abs(Omega)),XmY)
|
||||
|
||||
! print*,'X+Y'
|
||||
! call matout(nS,nS,XpY)
|
||||
|
||||
|
@ -7,7 +7,7 @@ subroutine print_excitation(method,ispin,nS,Omega)
|
||||
|
||||
! Input variables
|
||||
|
||||
character*4,intent(in) :: method
|
||||
character*6,intent(in) :: method
|
||||
integer,intent(in) :: ispin,nS
|
||||
double precision,intent(in) :: Omega(nS)
|
||||
|
||||
|
@ -1,6 +1,7 @@
|
||||
subroutine read_methods(doRHF,doUHF,doMOM, &
|
||||
doMP2,doMP3,doMP2F12, &
|
||||
doCCD,doCCSD,doCCSDT, &
|
||||
do_ring_CCD,do_ladder_CCD, &
|
||||
doCIS,doRPA,doTDHF, &
|
||||
doppRPA,doADC, &
|
||||
doGF2,doGF3, &
|
||||
@ -17,6 +18,7 @@ subroutine read_methods(doRHF,doUHF,doMOM, &
|
||||
logical,intent(out) :: doRHF,doUHF,doMOM
|
||||
logical,intent(out) :: doMP2,doMP3,doMP2F12
|
||||
logical,intent(out) :: doCCD,doCCSD,doCCSDT
|
||||
logical,intent(out) :: do_ring_CCD,do_ladder_CCD
|
||||
logical,intent(out) :: doCIS,doRPA,doTDHF,doppRPA,doADC
|
||||
logical,intent(out) :: doGF2,doGF3
|
||||
logical,intent(out) :: doG0W0,doevGW,doqsGW
|
||||
@ -45,6 +47,9 @@ subroutine read_methods(doRHF,doUHF,doMOM, &
|
||||
doCCSD = .false.
|
||||
doCCSDT = .false.
|
||||
|
||||
do_ring_CCD = .false.
|
||||
do_ladder_CCD = .false.
|
||||
|
||||
doCIS = .false.
|
||||
doRPA = .false.
|
||||
doTDHF = .false.
|
||||
@ -83,10 +88,12 @@ subroutine read_methods(doRHF,doUHF,doMOM, &
|
||||
! Read CC methods
|
||||
|
||||
read(1,*)
|
||||
read(1,*) answer1,answer2,answer3
|
||||
read(1,*) answer1,answer2,answer3,answer4,answer5
|
||||
if(answer1 == 'T') doCCD = .true.
|
||||
if(answer2 == 'T') doCCSD = .true.
|
||||
if(answer3 == 'T') doCCSDT = .true.
|
||||
if(answer4 == 'T') do_ring_CCD = .true.
|
||||
if(answer5 == 'T') do_ladder_CCD = .true.
|
||||
|
||||
! Read excited state methods
|
||||
|
||||
|
@ -182,12 +182,13 @@ subroutine ring_CCD(maxSCF,thresh,max_diis,nBas,nEl,ERI,ENuc,ERHF,eHF)
|
||||
|
||||
endif
|
||||
|
||||
! Moller-Plesset energies
|
||||
|
||||
write(*,*)
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP2) = ',EcMP2
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP3) = ',EcMP3
|
||||
write(*,'(1X,A15,1X,F10.6)') 'Ec(MP4-SDQ) = ',EcMP4
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,*)' ring-CCD energy '
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,'(1X,A30,1X,F15.10)')' E(ring-CCD) = ',ECCD
|
||||
write(*,'(1X,A30,1X,F15.10)')' Ec(ring-CCD) = ',EcCCD
|
||||
write(*,*)'----------------------------------------------------'
|
||||
write(*,*)
|
||||
|
||||
end subroutine ring_CCD
|
||||
|
Loading…
Reference in New Issue
Block a user