quack/src/GT/GTpp_phBSE_static_kernel_A.f90

71 lines
1.7 KiB
Fortran

subroutine GTpp_phBSE_static_kernel_A(eta,nBas,nC,nO,nV,nR,nS,nOO,nVV,lambda,Omega1,rho1,Omega2,rho2,KA)
! Compute the OOVV block of the static T-matrix
implicit none
include 'parameters.h'
! Input variables
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
integer,intent(in) :: nOO
integer,intent(in) :: nVV
double precision,intent(in) :: lambda
double precision,intent(in) :: Omega1(nVV)
double precision,intent(in) :: rho1(nBas,nBas,nVV)
double precision,intent(in) :: Omega2(nOO)
double precision,intent(in) :: rho2(nBas,nBas,nOO)
! Local variables
double precision :: chi
double precision :: eps
integer :: i,j,a,b,ia,jb,kl,cd,c,d
! Output variables
double precision,intent(out) :: KA(nS,nS)
KA(:,:) = 0d0
jb = 0
!$omp parallel do default(private) shared(KA,Omega1,Omega2,rho1,rho2,nO,nBas,nVV,nOO,chi,eps,eta,nC,nR,lambda)
do j=nC+1,nO
do b=nO+1,nBas-nR
jb = (b-nO) + (j-1)*(nBas-nO)
ia = 0
do i=nC+1,nO
do a=nO+1,nBas-nR
ia = (a-nO) + (i-1)*(nBas-nO)
chi = 0d0
do cd=1,nVV
eps = + Omega1(cd)
chi = chi + rho1(i,b,cd)*rho1(a,j,cd)*eps/(eps**2 + eta**2)
end do
do kl=1,nOO
eps = - Omega2(kl)
chi = chi + rho2(i,b,kl)*rho2(a,j,kl)*eps/(eps**2 + eta**2)
end do
KA(ia,jb) = lambda*chi
end do
end do
end do
end do
!$omp end parallel do
end subroutine