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debugging
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@ -112,6 +112,10 @@ BEGIN_PROVIDER [complex*16, ao_integrals_n_e_complex, (ao_num,ao_num)]
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!
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! :math:`\langle \chi_i | -\sum_A \frac{1}{|r-R_A|} | \chi_j \rangle`
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END_DOC
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print*,'error: ',irp_here
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write(*,*) "test"
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ao_integrals_n_e_complex(999,999) = 0.d0
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call abort()
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if (read_ao_integrals_n_e) then
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call ezfio_get_ao_one_e_ints_ao_integrals_n_e_complex(ao_integrals_n_e_complex)
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print *, 'AO N-e integrals read from disk'
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@ -10,10 +10,14 @@ BEGIN_PROVIDER [integer(bit_kind), ref_closed_shell_bitmask, (N_int,2)]
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ref_closed_shell_bitmask(i,1) = ref_bitmask(i,1)
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ref_closed_shell_bitmask(i,2) = ref_bitmask(i,2)
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enddo
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do i0 = elec_beta_num+1, elec_alpha_num
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i=occ(i0,1)
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call clear_bit_to_integer(i,ref_closed_shell_bitmask(1,1),N_int)
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enddo
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if (is_complex) then
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do
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else
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do i0 = elec_beta_num+1, elec_alpha_num
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i=occ(i0,1)
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call clear_bit_to_integer(i,ref_closed_shell_bitmask(1,1),N_int)
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enddo
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endif
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END_PROVIDER
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@ -159,7 +163,11 @@ subroutine get_single_excitation_from_fock(det_1,det_2,h,p,spin,phase,hij)
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end
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!============================================!
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! !
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! complex !
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! !
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!============================================!
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BEGIN_PROVIDER [complex*16, fock_op_cshell_ref_bitmask_cplx, (mo_num, mo_num) ]
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implicit none
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@ -304,3 +312,152 @@ subroutine get_single_excitation_from_fock_complex(det_1,det_2,h,p,spin,phase,hi
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end
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!============================================!
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! !
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! kpts !
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! !
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!============================================!
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BEGIN_PROVIDER [complex*16, fock_op_cshell_ref_bitmask_kpts, (mo_num_per_kpt, mo_num_per_kpt,kpt_num) ]
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implicit none
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integer :: i0,j0,i,j,k0,k
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integer :: n_occ_ab(2)
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integer :: occ(N_int*bit_kind_size,2)
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integer :: n_occ_ab_virt(2)
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integer :: occ_virt(N_int*bit_kind_size,2)
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integer(bit_kind) :: key_test(N_int)
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integer(bit_kind) :: key_virt(N_int,2)
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complex*16 :: accu
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call bitstring_to_list_ab(ref_closed_shell_bitmask, occ, n_occ_ab, N_int)
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do i = 1, N_int
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key_virt(i,1) = full_ijkl_bitmask(i)
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key_virt(i,2) = full_ijkl_bitmask(i)
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key_virt(i,1) = xor(key_virt(i,1),ref_closed_shell_bitmask(i,1))
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key_virt(i,2) = xor(key_virt(i,2),ref_closed_shell_bitmask(i,2))
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enddo
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complex*16, allocatable :: array_coulomb(:),array_exchange(:)
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allocate (array_coulomb(mo_num),array_exchange(mo_num))
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call bitstring_to_list_ab(key_virt, occ_virt, n_occ_ab_virt, N_int)
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! docc ---> virt single excitations
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do i0 = 1, n_occ_ab(1)
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i=occ(i0,1)
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do j0 = 1, n_occ_ab_virt(1)
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j = occ_virt(j0,1)
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! <ia|ja>
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call get_mo_two_e_integrals_coulomb_ii_complex(i,j,mo_num,array_coulomb,mo_integrals_map,mo_integrals_map_2)
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! <ia|aj>
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call get_mo_two_e_integrals_exch_ii_complex(i,j,mo_num,array_exchange,mo_integrals_map,mo_integrals_map_2)
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accu = (0.d0,0.d0)
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do k0 = 1, n_occ_ab(1)
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k = occ(k0,1)
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accu += 2.d0 * array_coulomb(k) - array_exchange(k)
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enddo
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fock_op_cshell_ref_bitmask_cplx(i,j) = accu + mo_one_e_integrals_complex(i,j)
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!fock_op_cshell_ref_bitmask_cplx(j,i) = dconjg(accu) + mo_one_e_integrals_complex(j,i)
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fock_op_cshell_ref_bitmask_cplx(j,i) = dconjg(fock_op_cshell_ref_bitmask_cplx(i,j))
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enddo
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enddo
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! virt ---> virt single excitations
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do i0 = 1, n_occ_ab_virt(1)
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i=occ_virt(i0,1)
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do j0 = 1, n_occ_ab_virt(1)
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j = occ_virt(j0,1)
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call get_mo_two_e_integrals_coulomb_ii_complex(i,j,mo_num,array_coulomb,mo_integrals_map,mo_integrals_map_2)
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call get_mo_two_e_integrals_exch_ii_complex(i,j,mo_num,array_exchange,mo_integrals_map,mo_integrals_map_2)
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accu = (0.d0,0.d0)
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do k0 = 1, n_occ_ab(1)
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k = occ(k0,1)
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accu += 2.d0 * array_coulomb(k) - array_exchange(k)
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enddo
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fock_op_cshell_ref_bitmask_cplx(i,j) = accu+ mo_one_e_integrals_complex(i,j)
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fock_op_cshell_ref_bitmask_cplx(j,i) = dconjg(accu)+ mo_one_e_integrals_complex(j,i)
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enddo
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enddo
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! docc ---> docc single excitations
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do i0 = 1, n_occ_ab(1)
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i=occ(i0,1)
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do j0 = 1, n_occ_ab(1)
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j = occ(j0,1)
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call get_mo_two_e_integrals_coulomb_ii_complex(i,j,mo_num,array_coulomb,mo_integrals_map,mo_integrals_map_2)
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call get_mo_two_e_integrals_exch_ii_complex(i,j,mo_num,array_exchange,mo_integrals_map,mo_integrals_map_2)
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accu = (0.d0,0.d0)
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do k0 = 1, n_occ_ab(1)
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k = occ(k0,1)
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accu += 2.d0 * array_coulomb(k) - array_exchange(k)
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enddo
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fock_op_cshell_ref_bitmask_cplx(i,j) = accu+ mo_one_e_integrals_complex(i,j)
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fock_op_cshell_ref_bitmask_cplx(j,i) = dconjg(accu)+ mo_one_e_integrals_complex(j,i)
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enddo
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enddo
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deallocate(array_coulomb,array_exchange)
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END_PROVIDER
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subroutine get_single_excitation_from_fock_complex(det_1,det_2,h,p,spin,phase,hij)
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use bitmasks
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implicit none
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integer,intent(in) :: h,p,spin
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double precision, intent(in) :: phase
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integer(bit_kind), intent(in) :: det_1(N_int,2), det_2(N_int,2)
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complex*16, intent(out) :: hij
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integer(bit_kind) :: differences(N_int,2)
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integer(bit_kind) :: hole(N_int,2)
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integer(bit_kind) :: partcl(N_int,2)
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integer :: occ_hole(N_int*bit_kind_size,2)
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integer :: occ_partcl(N_int*bit_kind_size,2)
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integer :: n_occ_ab_hole(2),n_occ_ab_partcl(2)
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integer :: i0,i
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complex*16 :: buffer_c(mo_num),buffer_x(mo_num)
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do i=1, mo_num
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buffer_c(i) = big_array_coulomb_integrals_complex(i,h,p)
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buffer_x(i) = big_array_exchange_integrals_complex(i,h,p)
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enddo
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do i = 1, N_int
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differences(i,1) = xor(det_1(i,1),ref_closed_shell_bitmask(i,1))
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differences(i,2) = xor(det_1(i,2),ref_closed_shell_bitmask(i,2))
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hole(i,1) = iand(differences(i,1),ref_closed_shell_bitmask(i,1))
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hole(i,2) = iand(differences(i,2),ref_closed_shell_bitmask(i,2))
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partcl(i,1) = iand(differences(i,1),det_1(i,1))
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partcl(i,2) = iand(differences(i,2),det_1(i,2))
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enddo
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call bitstring_to_list_ab(hole, occ_hole, n_occ_ab_hole, N_int)
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call bitstring_to_list_ab(partcl, occ_partcl, n_occ_ab_partcl, N_int)
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hij = fock_op_cshell_ref_bitmask_cplx(h,p)
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! holes :: direct terms
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do i0 = 1, n_occ_ab_hole(1)
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i = occ_hole(i0,1)
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hij -= buffer_c(i)
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enddo
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do i0 = 1, n_occ_ab_hole(2)
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i = occ_hole(i0,2)
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hij -= buffer_c(i)
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enddo
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! holes :: exchange terms
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do i0 = 1, n_occ_ab_hole(spin)
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i = occ_hole(i0,spin)
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hij += buffer_x(i)
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enddo
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! particles :: direct terms
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do i0 = 1, n_occ_ab_partcl(1)
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i = occ_partcl(i0,1)
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hij += buffer_c(i)
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enddo
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do i0 = 1, n_occ_ab_partcl(2)
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i = occ_partcl(i0,2)
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hij += buffer_c(i)
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enddo
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! particles :: exchange terms
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do i0 = 1, n_occ_ab_partcl(spin)
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i = occ_partcl(i0,spin)
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hij -= buffer_x(i)
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enddo
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hij = hij * phase
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end
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@ -24,6 +24,7 @@ BEGIN_PROVIDER [double precision, ao_ortho_cano_n_e_ints, (mo_num,mo_num)]
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END_PROVIDER
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BEGIN_PROVIDER [complex*16, ao_ortho_cano_n_e_ints_cplx, (mo_num,mo_num)]
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!todo: kpts
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implicit none
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integer :: i1,j1,i,j
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complex*16 :: c_i1,c_j1
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