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added complex scf density matrix
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@ -18,7 +18,7 @@ subroutine huckel_guess_complex
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A(i,j) = c * ao_overlap_complex(i,j) * (ao_one_e_integrals_diag(i) + ao_one_e_integrals_diag(j))
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enddo
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A(j,j) = ao_one_e_integrals_diag(j) + dble(ao_two_e_integral_alpha_complex(j,j))
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if (dabs(dimag(ao_two_e_integral_alpha_complex)) .gt. 1.0d-10) then
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if (dabs(dimag(ao_two_e_integral_alpha_complex(j,j))) .gt. 1.0d-10) then
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stop 'diagonal elements of ao_bi_elec_integral_alpha should be real'
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endif
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enddo
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41
src/scf_utils/scf_density_matrix_ao_complex.irp.f
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41
src/scf_utils/scf_density_matrix_ao_complex.irp.f
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@ -0,0 +1,41 @@
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BEGIN_PROVIDER [complex*16, SCF_density_matrix_ao_alpha_complex, (ao_num,ao_num) ]
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implicit none
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BEGIN_DOC
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! $C.C^t$ over $\alpha$ MOs
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END_DOC
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call zgemm('N','C',ao_num,ao_num,elec_alpha_num,(1.d0,0.d0), &
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mo_coef_complex, size(mo_coef_complex,1), &
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mo_coef_complex, size(mo_coef_complex,1), (0.d0,0.d0), &
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SCF_density_matrix_ao_alpha_complex, size(SCF_density_matrix_ao_alpha_complex,1))
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END_PROVIDER
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BEGIN_PROVIDER [ complex*16, SCF_density_matrix_ao_beta_complex, (ao_num,ao_num) ]
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implicit none
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BEGIN_DOC
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! $C.C^t$ over $\beta$ MOs
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END_DOC
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call zgemm('N','C',ao_num,ao_num,elec_beta_num,(1.d0,0.d0), &
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mo_coef_complex, size(mo_coef_complex,1), &
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mo_coef_complex, size(mo_coef_complex,1), (0.d0,0.d0), &
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SCF_density_matrix_ao_beta_complex, size(SCF_density_matrix_ao_beta_complex,1))
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END_PROVIDER
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BEGIN_PROVIDER [ complex*16, SCF_density_matrix_ao_complex, (ao_num,ao_num) ]
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implicit none
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BEGIN_DOC
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! Sum of $\alpha$ and $\beta$ density matrices
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END_DOC
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ASSERT (size(SCF_density_matrix_ao_complex,1) == size(SCF_density_matrix_ao_alpha_complex,1))
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if (elec_alpha_num== elec_beta_num) then
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SCF_density_matrix_ao_complex = SCF_density_matrix_ao_alpha_complex + SCF_density_matrix_ao_alpha_complex
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else
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ASSERT (size(SCF_density_matrix_ao_complex,1) == size(SCF_density_matrix_ao_beta_complex ,1))
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SCF_density_matrix_ao_complex = SCF_density_matrix_ao_alpha_complex + SCF_density_matrix_ao_beta_complex
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endif
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END_PROVIDER
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