mirror of https://gitlab.com/QEF/q-e.git
130 lines
4.2 KiB
Fortran
130 lines
4.2 KiB
Fortran
!
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! Copyright (C) 2001-2008 Quantum_ESPRESSO group
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! This file is distributed under the terms of the
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! GNU General Public License. See the file `License'
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! in the root directory of the present distribution,
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! or http://www.gnu.org/copyleft/gpl.txt .
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!
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!
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!-----------------------------------------------------------------------
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SUBROUTINE phqscf
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!-----------------------------------------------------------------------
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!
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! This subroutine is the main driver of the self consistent cycle
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! which gives as output the change of the wavefunctions and the
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! change of the self-consistent potential due to a phonon of
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! a fixed q or to an electric field.
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!
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USE kinds, ONLY : DP
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USE ions_base, ONLY : nat
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USE gvect, ONLY : nrxx
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USE lsda_mod, ONLY : nspin
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USE io_global, ONLY : stdout, ionode
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USE uspp, ONLY: okvan
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USE efield_mod, ONLY : zstarue0, zstarue0_rec
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USE control_ph, ONLY : zue, convt, rec_code
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USE partial, ONLY : done_irr, comp_irr
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USE modes, ONLY : nirr, npert, npertx
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USE phus, ONLY : int3, int3_nc, int3_paw
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USE uspp_param, ONLY : nhm
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USE eqv, ONLY : drhoscfs
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USE paw_variables, ONLY : okpaw
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USE noncollin_module, ONLY : noncolin, nspin_mag
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USE recover_mod, ONLY : write_rec
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USE mp_global, ONLY : inter_pool_comm, intra_pool_comm
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USE mp, ONLY : mp_sum
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IMPLICIT NONE
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INTEGER :: irr, irr1, imode0, npe
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! counter on the representations
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! counter on the representations
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! counter on the modes
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! npert(irr)
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REAL(DP) :: tcpu, get_clock
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! timing variables
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LOGICAL :: exst
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! used to test the recover file
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EXTERNAL get_clock
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! the change of density due to perturbations
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CALL start_clock ('phqscf')
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!
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! For each irreducible representation we compute the change
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! of the wavefunctions
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!
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DO irr = 1, nirr
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IF ( (comp_irr (irr) == 1) .AND. (done_irr (irr) == 0) ) THEN
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npe=npert(irr)
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ALLOCATE (drhoscfs( nrxx , nspin_mag, npe))
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imode0 = 0
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DO irr1 = 1, irr - 1
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imode0 = imode0 + npert (irr1)
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ENDDO
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IF (npe == 1) THEN
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WRITE( stdout, '(//,5x,"Representation #", i3," mode # ",i3)') &
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irr, imode0 + 1
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ELSE
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WRITE( stdout, '(//,5x,"Representation #", i3," modes # ",8i3)') &
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irr, (imode0+irr1, irr1=1,npe)
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ENDIF
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!
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! then for this irreducible representation we solve the linear system
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!
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IF (okvan) THEN
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ALLOCATE (int3 ( nhm, nhm, npe, nat, nspin_mag))
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IF (okpaw) ALLOCATE (int3_paw (nhm, nhm, npe, nat, nspin_mag))
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IF (noncolin) ALLOCATE(int3_nc( nhm, nhm, npe, nat, nspin))
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ENDIF
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WRITE( stdout, '(/,5x,"Self-consistent Calculation")')
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CALL solve_linter (irr, imode0, npe, drhoscfs)
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WRITE( stdout, '(/,5x,"End of self-consistent calculation")')
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!
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! Add the contribution of this mode to the dynamical matrix
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!
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IF (convt) THEN
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CALL drhodv (imode0, npe, drhoscfs)
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!
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! add the contribution of the modes imode0+1 -> imode+npe
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! to the effective charges Z(Us,E) (Us=scf,E=bare)
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!
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IF (zue) CALL add_zstar_ue (imode0, npe )
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IF (zue.AND. okvan) CALL add_zstar_ue_us(imode0, npe )
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IF (zue) THEN
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#ifdef __PARA
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call mp_sum ( zstarue0_rec, intra_pool_comm )
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call mp_sum ( zstarue0_rec, inter_pool_comm )
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#endif
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zstarue0(:,:)=zstarue0(:,:)+zstarue0_rec(:,:)
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END IF
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!
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WRITE( stdout, '(/,5x,"Convergence has been achieved ")')
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done_irr (irr) = 1
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ELSE
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WRITE( stdout, '(/,5x,"No convergence has been achieved ")')
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CALL stop_ph (.FALSE.)
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ENDIF
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rec_code=20
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CALL write_rec('done_drhod',irr,0.0_DP,-1000,.false.,npe,&
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drhoscfs)
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!
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IF (okvan) THEN
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DEALLOCATE (int3)
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IF (okpaw) DEALLOCATE (int3_paw)
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IF (noncolin) DEALLOCATE(int3_nc)
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ENDIF
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tcpu = get_clock ('PHONON')
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!
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DEALLOCATE (drhoscfs)
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ENDIF
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ENDDO
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CALL stop_clock ('phqscf')
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RETURN
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END SUBROUTINE phqscf
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