vectorized
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@ -638,7 +638,6 @@ module subroutine plastic_nonlocal_dependentState(F, Fp, ip, el)
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n
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real(pReal) :: &
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FVsize, &
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correction, &
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nRealNeighbors ! number of really existing neighbors
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integer, dimension(2) :: &
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neighbors
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@ -668,7 +667,6 @@ module subroutine plastic_nonlocal_dependentState(F, Fp, ip, el)
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real(pReal), dimension(totalNslip(phase_plasticityInstance(material_phaseAt(1,el))), &
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totalNslip(phase_plasticityInstance(material_phaseAt(1,el)))) :: &
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myInteractionMatrix ! corrected slip interaction matrix
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real(pReal), dimension(totalNslip(phase_plasticityInstance(material_phaseAt(1,el))),nIPneighbors) :: &
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rho_edg_delta_neighbor, &
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rho_scr_delta_neighbor
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@ -695,13 +693,11 @@ module subroutine plastic_nonlocal_dependentState(F, Fp, ip, el)
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! coefficients are corrected for the line tension effect
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! (see Kubin,Devincre,Hoc; 2008; Modeling dislocation storage rates and mean free paths in face-centered cubic crystals)
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if (any(lattice_structure(material_phaseAt(1,el)) == [LATTICE_bcc_ID,LATTICE_fcc_ID])) then
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do s = 1,ns
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correction = ( 1.0_pReal - prm%linetensionEffect &
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myInteractionMatrix = prm%interactionSlipSlip &
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* transpose(spread(( 1.0_pReal - prm%linetensionEffect &
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+ prm%linetensionEffect &
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* log(0.35_pReal * prm%burgers(s) * sqrt(max(stt%rho_forest(s,of),prm%significantRho))) &
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/ log(0.35_pReal * prm%burgers(s) * 1e6_pReal)) ** 2.0_pReal
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myInteractionMatrix(:,s) = correction * prm%interactionSlipSlip(:,s)
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enddo
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* log(0.35_pReal * prm%burgers * sqrt(max(stt%rho_forest(:,of),prm%significantRho))) &
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/ log(0.35_pReal * prm%burgers * 1e6_pReal))** 2.0_pReal,2,ns))
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else
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myInteractionMatrix = prm%interactionSlipSlip
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endif
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