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typo flow RG0W0
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@ -25,7 +25,7 @@ subroutine GGW_ppBSE_upfolded(nOrb,nC,nO,nV,nR,nS,ERI,rho,Om,eGW)
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integer :: a,b,c,d
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integer :: m,ij,kl,ijm
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integer :: ab,cd,abm
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integer,parameter :: maxH = 100
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integer,parameter :: maxH = 1000
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double precision :: tmp,tmp1,tmp2,tmp3,tmp4
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integer :: n1h,n1p,n2h,n2p,n1h1p,n3h1p,n3p1h,n2h2p,nH
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@ -65,7 +65,7 @@ subroutine GGW_ppBSE_upfolded(nOrb,nC,nO,nV,nR,nS,ERI,rho,Om,eGW)
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n3h1p = n2h*n1h1p
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n3p1h = n2p*n1h1p
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nH = n2p + n3p1h
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nH = n2p + 4*n3p1h
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! nH = n2h + n3h1p
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! Memory allocation
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@ -156,19 +156,19 @@ subroutine GGW_ppBSE_upfolded(nOrb,nC,nO,nV,nR,nS,ERI,rho,Om,eGW)
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tmp1 = Kronecker_delta(b,d)*rho(a,c,m)
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tmp2 = Kronecker_delta(b,c)*rho(a,d,m)
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tmp3 = Kronecker_delta(a,d)*rho(b,c,m)
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tmp4 = Kronecker_delta(a,c)*rho(b,d,m)
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tmp4 = - Kronecker_delta(a,c)*rho(b,d,m)
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H(n2p+0*n3p1h+abm,cd ) = tmp1 + tmp2
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H(cd ,n2p+0*n3p1h+abm) = tmp3 + tmp4
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H(n2p+0*n3p1h+abm,cd ) = tmp1
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H(cd ,n2p+0*n3p1h+abm) = tmp3
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! H(n2h+1*n3h1p+ijm,kl ) = +tmp4
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! H(kl ,n2h+1*n3h1p+ijm) = +tmp2
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!
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! H(n2h+2*n3h1p+ijm,kl ) = +tmp1
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! H(kl ,n2h+2*n3h1p+ijm) = +tmp4
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H(n2p+1*n3p1h+abm,cd ) = tmp1
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H(cd ,n2p+1*n3p1h+abm) = tmp4
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H(n2p+2*n3p1h+abm,cd ) = tmp2
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H(cd ,n2p+2*n3p1h+abm) = tmp3
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! H(n2h+3*n3h1p+ijm,kl ) = +tmp3
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! H(kl ,n2h+3*n3h1p+ijm) = +tmp1
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H(n2p+3*n3p1h+abm,cd ) = tmp2
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H(cd ,n2p+3*n3p1h+abm) = tmp4
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end do
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end do
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@ -225,6 +225,9 @@ subroutine GGW_ppBSE_upfolded(nOrb,nC,nO,nV,nR,nS,ERI,rho,Om,eGW)
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tmp = eGW(a) + eGW(b) + Om(m)
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H(n2p+0*n3p1h+abm,n2p+0*n3p1h+abm) = tmp
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H(n2p+1*n3p1h+abm,n2p+1*n3p1h+abm) = tmp
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H(n2p+2*n3p1h+abm,n2p+2*n3p1h+abm) = tmp
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H(n2p+3*n3p1h+abm,n2p+3*n3p1h+abm) = tmp
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end do
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end do
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@ -85,7 +85,7 @@ subroutine RG0W0(dotest,doACFDT,exchange_kernel,doXBS,dophBSE,dophBSE2,TDA_W,TDA
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! SRG regularization
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flow = 10d0
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flow = 500d0
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if(doSRG) then
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