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Introduced error bars in variance and norm
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@ -360,9 +360,9 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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integer, intent(in) :: N_
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double precision, allocatable :: eI(:,:), eI_task(:,:), S(:), S2(:)
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double precision, allocatable :: vI(:,:), vI_task(:,:), T2(:)
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double precision, allocatable :: nI(:,:), nI_task(:,:), T3(:)
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double precision, allocatable :: eI(:,:), eI_task(:,:), Se(:), Se2(:)
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double precision, allocatable :: vI(:,:), vI_task(:,:), Sv(:), Sv2(:)
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double precision, allocatable :: nI(:,:), nI_task(:,:), Sn(:), Sn2(:)
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integer(ZMQ_PTR),external :: new_zmq_to_qp_run_socket
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integer(ZMQ_PTR) :: zmq_to_qp_run_socket
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integer, external :: zmq_delete_tasks_async_send
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@ -402,8 +402,9 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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allocate(eI(N_states, N_det_generators), eI_task(N_states, pt2_n_tasks_max))
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allocate(vI(N_states, N_det_generators), vI_task(N_states, pt2_n_tasks_max))
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allocate(nI(N_states, N_det_generators), nI_task(N_states, pt2_n_tasks_max))
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allocate(S(pt2_N_teeth+1), S2(pt2_N_teeth+1))
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allocate(T2(pt2_N_teeth+1), T3(pt2_N_teeth+1))
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allocate(Se(pt2_N_teeth+1), Se2(pt2_N_teeth+1))
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allocate(Sv(pt2_N_teeth+1), Sv2(pt2_N_teeth+1))
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allocate(Sn(pt2_N_teeth+1), Sn2(pt2_N_teeth+1))
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@ -415,10 +416,12 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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pt2_data % pt2_err(pt2_stoch_istate) = huge(1.)
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pt2_data % variance(pt2_stoch_istate) = huge(1.)
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pt2_data % norm2(pt2_stoch_istate) = 0.d0
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S(:) = 0d0
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S2(:) = 0d0
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T2(:) = 0d0
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T3(:) = 0d0
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Se(:) = 0d0
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Sv(:) = 0d0
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Sn(:) = 0d0
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Se2(:) = 0d0
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Sv2(:) = 0d0
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Sn2(:) = 0d0
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n = 1
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t = 0
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U = 0
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@ -474,14 +477,16 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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x += eI(pt2_stoch_istate, i) * pt2_W_T / pt2_w(i)
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x2 += vI(pt2_stoch_istate, i) * pt2_W_T / pt2_w(i)
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x3 += nI(pt2_stoch_istate, i) * pt2_W_T / pt2_w(i)
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S(p) += x
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S2(p) += x*x
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T2(p) += x2
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T3(p) += x3
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Se(p) += x
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Sv(p) += x2
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Sn(p) += x3
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Se2(p) += x*x
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Sv2(p) += x2*x2
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Sn2(p) += x3*3
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end do
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avg = E0 + S(t) / dble(c)
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avg2 = v0 + T2(t) / dble(c)
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avg3 = n0 + T3(t) / dble(c)
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avg = E0 + Se(t) / dble(c)
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avg2 = v0 + Sv(t) / dble(c)
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avg3 = n0 + Sn(t) / dble(c)
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if ((avg /= 0.d0) .or. (n == N_det_generators) ) then
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do_exit = .true.
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endif
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@ -494,9 +499,18 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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call wall_time(time)
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! 1/(N-1.5) : see Brugger, The American Statistician (23) 4 p. 32 (1969)
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if(c > 2) then
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eqt = dabs((S2(t) / c) - (S(t)/c)**2) ! dabs for numerical stability
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eqt = dabs((Se2(t) / c) - (Se(t)/c)**2) ! dabs for numerical stability
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eqt = sqrt(eqt / (dble(c) - 1.5d0))
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pt2_data % pt2_err(pt2_stoch_istate) = eqt
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eqt = dabs((Sv2(t) / c) - (Sv(t)/c)**2) ! dabs for numerical stability
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eqt = sqrt(eqt / (dble(c) - 1.5d0))
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pt2_data % variance_err(pt2_stoch_istate) = eqt
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eqt = dabs((Sn2(t) / c) - (Sn(t)/c)**2) ! dabs for numerical stability
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eqt = sqrt(eqt / (dble(c) - 1.5d0))
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pt2_data % norm2_err(pt2_stoch_istate) = eqt
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if ((time - time1 > 1.d0) .or. (n==N_det_generators)) then
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time1 = time
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print '(G10.3, 2X, F16.10, 2X, G10.3, 2X, F14.10, 2X, F14.10, 2X, F10.4, A10)', c, avg+E, eqt, avg2, avg3, time-time0, ''
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@ -520,7 +534,7 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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call pull_pt2_results(zmq_socket_pull, index, eI_task, vI_task, nI_task, task_id, n_tasks, b2)
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if(n_tasks > pt2_n_tasks_max)then
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print*,'PB !!!'
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print*,'If you see this, send an email to Anthony scemama with the following content'
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print*,'If you see this, send a bug report with the following content'
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print*,irp_here
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print*,'n_tasks,pt2_n_tasks_max = ',n_tasks,pt2_n_tasks_max
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stop -1
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@ -531,7 +545,7 @@ subroutine pt2_collector(zmq_socket_pull, E, relative_error, pt2_data, b, N_)
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do i=1,n_tasks
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if(index(i).gt.size(eI,2).or.index(i).lt.1)then
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print*,'PB !!!'
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print*,'If you see this, send an email to Anthony scemama with the following content'
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print*,'If you see this, send a bug report with the following content'
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print*,irp_here
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print*,'i,index(i),size(ei,2) = ',i,index(i),size(ei,2)
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stop -1
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@ -70,12 +70,12 @@ subroutine print_summary(e_,pt2_data,n_det_,n_occ_pattern_,n_st,s2_)
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print*,'* State ',k
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print *, '< S^2 > = ', s2_(k)
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print *, 'E = ', e_(k)
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print *, 'Variance = ', pt2_data % variance(k)
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print *, 'PT norm = ', dsqrt(pt2_data % norm2(k))
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print *, 'PT2 = ', pt2_data % pt2(k)
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print *, 'rPT2 = ', pt2_data % pt2(k)*f(k)
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print *, 'E+PT2 '//pt2_string//' = ', e_(k)+pt2_data % pt2(k), ' +/- ', pt2_data % pt2_err(k)
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print *, 'E+rPT2'//pt2_string//' = ', e_(k)+pt2_data % pt2(k)*f(k), ' +/- ', pt2_data % pt2_err(k)*f(k)
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print *, 'Variance = ', pt2_data % variance(k), ' +/- ', pt2_data % variance_err(k)
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print *, 'PT norm = ', dsqrt(pt2_data % norm2(k)), ' +/- ', 0.5d0*dsqrt(pt2_data % norm2(k)) * pt2_data % norm2_err(k) / pt2_data % norm2(k)
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print *, 'PT2 = ', pt2_data % pt2(k), ' +/- ', pt2_data % pt2_err(k)
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print *, 'rPT2 = ', pt2_data % pt2(k)*f(k), ' +/- ', pt2_data % rpt2_err(k)
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print *, 'E+PT2 '//pt2_string//' = ', e_(k)+pt2_data % pt2(k), ' +/- ', pt2_data % pt2_err(k)
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print *, 'E+rPT2'//pt2_string//' = ', e_(k)+pt2_data % pt2(k)*f(k), ' +/- ', pt2_data % pt2_err(k)*f(k)
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print *, ''
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enddo
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