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modified fit_1s_basis.irp.f
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external/irpf90
vendored
2
external/irpf90
vendored
@ -1 +1 @@
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Subproject commit 43160c60d88d9f61fb97cc0b35477c8eb0df862b
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Subproject commit 4ab1b175fc7ed0d96c1912f13dc53579b24157a6
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@ -11,6 +11,11 @@ double precision function coul_full_ao_pq_r_1s(p,q,R,R_p,R_q)
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double precision, intent(in) :: R(3),R_p(3),R_q(3)
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integer, intent(in) :: p,q
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double precision :: coef,dist,P_pq(3),coefaos
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if(.not.ao_extra_only_1s)then
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print*,'You are using a function assuming that the extra basis is fitted on 1s functions'
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print*,'But this is not the case apparently ... stopping'
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stop
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endif
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coefaos= ao_extra_coef_normalized(p,1) * ao_extra_coef_normalized(q,1)
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coef = inv_pi_gamma_pq_3_2_ao_extra(p,q) * E_pq_ao_extra(p,q)
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P_pq = ao_extra_expo(p,1) * R_p + ao_extra_expo(q,1) * R_q
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@ -40,6 +45,11 @@ double precision function coul_pq_r_1s(p,q,R,R_p,R_q)
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double precision, intent(in) :: R(3),R_p(3),R_q(3)
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integer, intent(in) :: p,q
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double precision :: dist,P_pq(3)
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if(.not.ao_extra_only_1s)then
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print*,'You are using a function assuming that the extra basis is fitted on 1s functions'
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print*,'But this is not the case apparently ... stopping'
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stop
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endif
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P_pq = ao_extra_expo(p,1) * R_p + ao_extra_expo(q,1) * R_q
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P_pq = P_pq * inv_gamma_pq_ao_extra(q,p)
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dist = (P_pq(1)-R(1)) * (P_pq(1)-R(1))
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@ -3,23 +3,45 @@ BEGIN_PROVIDER [ double precision, pot_vne_A_extra_basis, (ao_extra_num,ao_extra
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BEGIN_DOC
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!
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! Computes the following integral :
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! $\sum_{R in nuclei} -Z <chi_i|1/|r-R||chi_j>$
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! $\sum_{R in the USUAL nuclei} -Z <chi_i|1/|r-R||chi_j>$
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!
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!
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! where $\chi_i(r)$ AND $\chi_j(r)$ belongs to the extra basis
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! where $\chi_i(r)$ AND $\chi_j(r)$ belongs to the EXTRA basis
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END_DOC
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integer :: mu,nu,k_nucl
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double precision :: mu_in, R_nucl(3),charge_nucl, integral
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double precision :: NAI_pol_mult_erf_ao_extra
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mu_in = 10.d0**10
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integer :: mu,nu
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double precision :: v_nucl_extra_ao
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pot_vne_A_extra_basis = 0.d0
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do mu = 1, ao_extra_num
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do nu = 1, ao_extra_num
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do k_nucl = 1, nucl_num
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R_nucl(1:3) = nucl_coord_transp(1:3,k_nucl)
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charge_nucl = nucl_charge(k_nucl)
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integral = NAI_pol_mult_erf_ao_extra(mu, nu, mu_in, R_nucl)
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pot_vne_A_extra_basis(nu,mu) += -integral * charge_nucl
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pot_vne_A_extra_basis(nu,mu)= v_nucl_extra_ao(mu,nu)
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enddo
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enddo
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END_PROVIDER
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BEGIN_PROVIDER [ double precision, pot_vne_extra_basis, (ao_num,ao_num)]
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implicit none
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BEGIN_DOC
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!
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! Computes the following integral :
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! $\sum_{R in EXTRA nuclei} -Z <chi_i|1/|r-R||chi_j>$
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!
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!
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! where $\chi_i(r)$ AND $\chi_j(r)$ belongs to the USUAL basis
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END_DOC
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integer :: mu,nu,k_nucl
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double precision :: mu_in, R_nucl(3),charge_nucl, integral
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double precision :: NAI_pol_mult_erf_ao
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mu_in = 10.d0**10
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pot_vne_extra_basis = 0.d0
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do mu = 1, ao_num
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do nu = 1, ao_num
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do k_nucl = 1, extra_nucl_num
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R_nucl(1:3) = extra_nucl_coord_transp(1:3,k_nucl)
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charge_nucl = extra_nucl_charge(k_nucl)
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integral = NAI_pol_mult_erf_ao(mu, nu, mu_in, R_nucl)
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pot_vne_extra_basis(nu,mu) += -integral * charge_nucl
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enddo
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enddo
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enddo
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@ -1,3 +1,6 @@
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!!! TODO:: optimize when "ao_extra_only_1s" is True
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double precision function v_extra_nucl_extra_ao(i_ao,j_ao)
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implicit none
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BEGIN_DOC
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@ -23,6 +26,30 @@ double precision function v_extra_nucl_extra_ao(i_ao,j_ao)
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enddo
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end
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double precision function v_extra_nucl_ao(i_ao,j_ao)
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implicit none
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BEGIN_DOC
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!
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! Computes the following integral :
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! $\int_{-\infty}^{infty} dr \chi_i(r) \chi_j(r) v_ne(r)$.
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!
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!
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! where BOTH $\chi_i(r)$ AND $\chi_j(r)$ belongs to the REGULAR basis
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!
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! and v_ne(r) is the Coulomb potential coming from the EXTRA nuclei
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END_DOC
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integer, intent(in) ::i_ao,j_ao
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integer :: i
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double precision :: mu_in, coord(3),charge, integral
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double precision :: NAI_pol_mult_erf_ao
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mu_in = 1.d+10
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do i = 1, extra_nucl_num
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coord(1:3) = extra_nucl_coord_transp(1:3,i)
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charge = extra_nucl_charge(i)
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v_extra_nucl_ao += -NAI_pol_mult_erf_ao(i_ao, j_ao, mu_in, coord) * charge
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enddo
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end
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double precision function v_nucl_extra_ao(i_ao,j_ao)
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implicit none
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@ -31,6 +31,7 @@ program fit_1s_basis
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call ezfio_set_extra_nuclei_extra_nucl_label(new_nucl_label_1s)
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!
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call ezfio_set_ao_extra_basis_ao_extra_num(n_func_tot)
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call ezfio_set_ao_extra_basis_ao_extra_only_1s(.True.)
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call ezfio_set_ao_extra_basis_ao_extra_center(ao_extra_center)
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call ezfio_set_ao_extra_basis_ao_extra_nucl(new_ao_nucl_1s)
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call ezfio_set_ao_extra_basis_ao_extra_prim_num(new_ao_prim_num_1s)
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