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quack/src/QuAcK/self_energy_correlation_diag.f90

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subroutine self_energy_correlation_diag(COHSEX,SOSEX,eta,nBas,nC,nO,nV,nR,nS,e,Omega,rho,rhox,EcGM,SigC)
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! Compute diagonal of the correlation part of the self-energy
implicit none
include 'parameters.h'
! Input variables
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logical,intent(in) :: COHSEX
logical,intent(in) :: SOSEX
double precision,intent(in) :: eta
integer,intent(in) :: nBas
integer,intent(in) :: nC
integer,intent(in) :: nO
integer,intent(in) :: nV
integer,intent(in) :: nR
integer,intent(in) :: nS
double precision,intent(in) :: e(nBas)
double precision,intent(in) :: Omega(nS)
double precision,intent(in) :: rho(nBas,nBas,nS)
double precision,intent(in) :: rhox(nBas,nBas,nS)
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! Local variables
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integer :: i,a,p,q,jb
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double precision :: eps
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double precision,external :: SigC_dcgw
! Output variables
double precision,intent(out) :: SigC(nBas)
double precision,intent(out) :: EcGM
! Initialize
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SigC(:) = 0d0
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!-----------------------------
! COHSEX static self-energy
!-----------------------------
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if(COHSEX) then
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! COHSEX: SEX part of the COHSEX correlation self-energy
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do p=nC+1,nBas-nR
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do i=nC+1,nO
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do jb=1,nS
SigC(p) = SigC(p) + 4d0*rho(p,i,jb)**2/Omega(jb)
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end do
end do
end do
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! COHSEX: COH part of the COHSEX correlation self-energy
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do p=nC+1,nBas-nR
do q=nC+1,nBas-nR
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do jb=1,nS
SigC(p) = SigC(p) - 2d0*rho(p,q,jb)**2/Omega(jb)
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end do
end do
end do
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! GM correlation energy
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EcGM = 0d0
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do i=nC+1,nO
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EcGM = EcGM + 0.5d0*SigC(i)
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end do
!-----------------------------
! SOSEX self-energy *BUG*
!-----------------------------
elseif(SOSEX) then
! SOSEX: occupied part of the correlation self-energy
do p=nC+1,nBas-nR
do i=nC+1,nO
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do jb=1,nS
eps = e(p) - e(i) + Omega(jb)
SigC(p) = SigC(p) - rho(p,i,jb)*rhox(p,i,jb)*eps/(eps**2 + eta**2)
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end do
end do
end do
! SOSEX: virtual part of the correlation self-energy
do p=nC+1,nBas-nR
do a=nO+1,nBas-nR
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do jb=1,nS
eps = e(p) - e(a) - Omega(jb)
SigC(p) = SigC(p) - rho(p,a,jb)*rhox(p,a,jb)*eps/(eps**2 + eta**2)
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end do
end do
end do
! GM correlation energy
do i=nC+1,nO
do a=nO+1,nBas-nR
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do jb=1,nS
eps = e(a) - e(i) + Omega(jb)
EcGM = EcGM + rho(a,i,jb)*rhox(a,i,jb)*eps/(eps**2 + eta**2)
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end do
end do
end do
!-----------------------------
! GW self-energy
!-----------------------------
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else
! Occupied part of the correlation self-energy
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do p=nC+1,nBas-nR
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do i=nC+1,nO
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do jb=1,nS
eps = e(p) - e(i) + Omega(jb)
SigC(p) = SigC(p) + 2d0*rho(p,i,jb)**2*eps/(eps**2 + eta**2)
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end do
end do
end do
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! Virtual part of the correlation self-energy
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do p=nC+1,nBas-nR
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do a=nO+1,nBas-nR
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do jb=1,nS
eps = e(p) - e(a) - Omega(jb)
SigC(p) = SigC(p) + 2d0*rho(p,a,jb)**2*eps/(eps**2 + eta**2)
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end do
end do
end do
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! GM correlation energy
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EcGM = 0d0
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do i=nC+1,nO
do a=nO+1,nBas-nR
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do jb=1,nS
eps = e(a) - e(i) + Omega(jb)
EcGM = EcGM - 2d0*rho(a,i,jb)*rho(a,i,jb)*eps/(eps**2 + eta**2)
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end do
end do
end do
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end if
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end subroutine self_energy_correlation_diag