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@ -130,3 +130,42 @@ subroutine get_grad_f_mf_ab(r,grad_f_mf_ab, grad_two_bod_dens,f_mf_ab,two_bod_de
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grad_f_mf_ab *= 2.D0
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grad_two_bod_dens *= 2.d0
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end
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subroutine mu_of_r_mean_field(r,mu_mf, dm)
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implicit none
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include 'constants.include.F'
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double precision, intent(in) :: r(3)
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double precision, intent(out):: mu_mf, dm
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double precision :: f_mf_ab,two_bod_dens, dm_a, dm_b
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call get_f_mf_ab(r,f_mf_ab,two_bod_dens, dm_a, dm_b)
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dm = dm_a + dm_b
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if(dabs(two_bod_dens).lt.1.d-10)then
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mu_mf = 1.d+10
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else
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mu_mf = 0.5d0 * sqpi * f_mf_ab/two_bod_dens
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endif
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end
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subroutine grad_mu_of_r_mean_field(r,mu_mf, dm, grad_mu_mf, grad_dm)
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implicit none
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include 'constants.include.F'
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double precision, intent(in) :: r(3)
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double precision, intent(out):: grad_mu_mf(3), grad_dm(3)
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double precision, intent(out):: mu_mf, dm
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double precision :: grad_f_mf_ab(3), grad_two_bod_dens(3),grad_dm_a(3), grad_dm_b(3)
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double precision :: f_mf_ab,two_bod_dens, dm_a, dm_b
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call get_grad_f_mf_ab(r,grad_f_mf_ab, grad_two_bod_dens,f_mf_ab,two_bod_dens, dm_a, dm_b,grad_dm_a, grad_dm_b)
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dm = dm_a + dm_b
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grad_dm(1:3) = grad_dm_a(1:3) + grad_dm_b(1:3)
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if(dabs(two_bod_dens).lt.1.d-10)then
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mu_mf = 1.d+10
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grad_mu_mf = 0.d0
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else
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mu_mf = 0.5d0 * sqpi * f_mf_ab/two_bod_dens
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grad_mu_mf(1:3) = 0.5d0 * sqpi * (grad_f_mf_ab(1:3) * two_bod_dens - f_mf_ab * grad_two_bod_dens(1:3))&
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/(two_bod_dens*two_bod_dens)
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endif
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end
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@ -19,7 +19,8 @@ program projected_operators
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! call test_f_ii_ia_aa_valence_ab
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! call test
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! call test_f_mean_field
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call test_grad_f_mean_field
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! call test_grad_f_mean_field
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call test_grad_mu_mf
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end
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@ -129,3 +130,47 @@ subroutine test_grad_f_mean_field
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print*,accu_grad_dm_b
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end
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subroutine test_grad_mu_mf
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implicit none
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integer :: i_point,k
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double precision :: weight,r(3),rbis(3)
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double precision :: mu_mf, dm,grad_mu_mf(3), grad_dm(3)
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double precision :: mu_mf_p, mu_mf_m, dm_m, dm_p, num_grad_mu_mf(3),dr, num_grad_dm(3)
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double precision :: accu_mu, accu_dm, accu_grad_dm(3), accu_grad_mu_mf(3)
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dr = 0.00001d0
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accu_grad_mu_mf = 0.d0
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accu_mu = 0.d0
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accu_grad_dm = 0.d0
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accu_dm = 0.d0
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do i_point = 1, n_points_final_grid
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r(1:3) = final_grid_points(1:3,i_point)
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weight = final_weight_at_r_vector(i_point)
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call grad_mu_of_r_mean_field(r,mu_mf, dm, grad_mu_mf, grad_dm)
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call mu_of_r_mean_field(r,mu_mf_p, dm_p)
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accu_mu += weight*dabs(mu_mf_p - mu_mf)
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accu_dm += weight*dabs(dm_p - dm)
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do k = 1, 3
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rbis = r
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rbis(k) += dr
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call mu_of_r_mean_field(rbis,mu_mf_p, dm_p)
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rbis = r
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rbis(k) -= dr
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call mu_of_r_mean_field(rbis,mu_mf_m, dm_m)
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num_grad_mu_mf(k) = (mu_mf_p - mu_mf_m)/(2.d0*dr)
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num_grad_dm(k) = (dm_p - dm_m)/(2.d0*dr)
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enddo
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do k = 1, 3
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accu_grad_dm(k)+= weight *dabs(num_grad_dm(k) - grad_dm(k))
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accu_grad_mu_mf(k)+= weight *dabs(num_grad_mu_mf(k) - grad_mu_mf(k))
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enddo
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enddo
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print*,'accu_mu = ',accu_mu
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print*,'accu_dm = ',accu_dm
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print*,'accu_grad_dm = '
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print*, accu_grad_dm
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print*,'accu_grad_mu_mf = '
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print*, accu_grad_mu_mf
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end
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