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Added do_single_excitation_cfg, single-exc wrt cfg
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@ -584,3 +584,4 @@ BEGIN_PROVIDER [ integer(bit_kind), dominant_dets_of_cfgs, (N_int,2,N_dominant_d
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i += sze
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i += sze
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enddo
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enddo
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END_PROVIDER
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END_PROVIDER
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@ -108,3 +108,75 @@ logical function is_spin_flip_possible(key_in,i_flip,ispin)
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endif
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endif
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end
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end
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subroutine do_single_excitation_cfg(key_in,i_hole,i_particle,i_ok)
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use bitmasks
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implicit none
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BEGIN_DOC
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! Applies the signle excitation operator to a configuration
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! If the excitation is possible, i_ok is True
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END_DOC
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integer, intent(in) :: i_hole,i_particle
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integer(bit_kind), intent(inout) :: key_in(N_int,2)
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integer, intent(out) :: i_ok
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integer :: k,j,i
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integer(bit_kind) :: mask
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ASSERT (i_hole > 0)
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ASSERT (i_particle <= mo_num)
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i_ok = 1
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! hole
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k = shiftr(i_hole-1,bit_kind_shift)+1
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j = i_hole-shiftl(k-1,bit_kind_shift)-1
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mask = ibset(0_bit_kind,j)
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! Check if the position j is singly occupied
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! 1 -> 0 (SOMO)
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! 0 0 (DOMO)
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if (iand(key_in(k,1),mask) /= 0_bit_kind) then
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key_in(k,1) = ibclr(key_in(k,1),j)
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! Check if the position j is doubly occupied
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! 0 -> 1 (SOMO)
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! 1 0 (DOMO)
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else if (iand(key_in(k,2),mask) /= 0_bit_kind) then
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key_in(k,1) = ibset(key_in(k,1),j)
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key_in(k,2) = ibclr(key_in(k,2),j)
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! The position j is unoccupied: Not OK
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! 0 -> 0 (SOMO)
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! 0 0 (DOMO)
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else
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i_ok = -1
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return
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endif
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! particle
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k = shiftr(i_particle-1,bit_kind_shift)+1
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j = i_particle-shiftl(k-1,bit_kind_shift)-1
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mask = ibset(0_bit_kind,j)
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! Check if the position j is singly occupied
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! 1 -> 0 (SOMO)
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! 0 1 (DOMO)
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if (iand(key_in(k,1),mask) /= 0_bit_kind) then
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key_in(k,1) = ibclr(key_in(k,1),j)
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key_in(k,2) = ibset(key_in(k,2),j)
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! Check if the position j is doubly occupied : Not OK
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! 0 -> 1 (SOMO)
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! 1 0 (DOMO)
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else if (iand(key_in(k,2),mask) /= 0_bit_kind) then
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i_ok = -1
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return
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! Position at j is unoccupied
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! 0 -> 0 (SOMO)
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! 0 0 (DOMO)
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else
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key_in(k,1) = ibset(key_in(k,1),j)
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endif
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end
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