Spacing
Spacing
Section Mesh
Type float
The spacing between the points in the mesh. This controls the
quality of the discretization: smaller spacing gives more
precise results but increased computational cost.
When using curvilinear coordinates, this is a canonical spacing that will be changed locally by the transformation. In periodic directions, your spacing may be slightly different than what you request here, since the box size must be an integer multiple of the spacing.
The default value is defined by the species if only default pseudopotentials are used or by the image resolution if BoxShape = box_image. Otherwise, there is no default.
It is possible to have a different spacing in each one of the Cartesian directions if we define Spacing as block of the form
%Spacing
  spacing_x | spacing_y | spacing_z
%
grid/grid.F90 : 140
call parse_variable(namespace, 'Spacing', -M_ONE, grid_spacing(1), units_inp%length)
- Model/e-H_Scattering
- Unsorted/Basic_QOCT
- Unsorted/DFT+U
- Unsorted/Geometry_optimization
- Unsorted/Magnons
- Unsorted/Parallelization_and_performance
- Unsorted/Polarizable_Continuum_Model_(PCM)
- Unsorted/RDMFT
- Unsorted/Sternheimer_linear_response
- Unsorted/Vibrational_modes
- Unsorted/Wannier90
- Unsorted/Unfolding
- Unsorted/Wires_and_slabs
- Basics/Basic_input_options
- Basics/Total_energy_convergence
- Basics/Time-dependent_propagation
- Obsolete/OpenDX
- Periodic_Systems/Periodic_systems
- Periodic_Systems/Unfolding
- Periodic_Systems/Wires_and_slabs
- Periodic_Systems/DFT+U
- Periodic_Systems/Magnons
- Response/Optical_spectra_from_Sternheimer
- components/01-derivatives_1d.01.inp
- components/01-derivatives_1d.02-fortran.inp
- components/02-derivatives_2d.01.inp
- components/03-derivatives_3d.01.inp
- components/03-derivatives_3d.02-non-orthogonal.inp
- components/03-derivatives_3d.02-non-orthogonal_unpacked.inp
- components/04-hartree_3d_cg.01-cg_corrected.inp
- components/05-hartree_3d_fft.01-fft.inp
- components/05-hartree_3d_fft.02-fft_corrected.inp
- components/05-hartree_3d_fft.03-3d_1d_periodic.inp
- components/05-hartree_3d_fft.04-3d_3d_periodic.inp
- components/05-hartree_3d_fft.05-3d_2d_periodic.inp
- components/06-hartree_3d_isf.01-isf.inp
- components/07-cholesky_serial.01-real.inp
- components/07-cholesky_serial.02-complex.inp
- components/07-cholesky_serial.03-parindep.inp
- components/08-gs.01-cgs_real.inp
- components/08-gs.02-cgs_complex.inp
- components/08-gs.03-mgs_real.inp
- components/08-gs.04-mgs_complex.inp
- components/08-gs.05-drcgs_real.inp
- components/08-gs.06-drcgs_complex.inp
- components/10-hartree_pfft.01-fft.inp
- components/10-hartree_pfft.02-fft_corrected.inp
- components/10-hartree_pfft.03-3d_1d_periodic.inp
- components/10-hartree_pfft.04-3d_3d_periodic.inp
- components/10-hartree_pfft.05-3d_2d_periodic.inp
- components/11-hartree_cl.01-fft.inp
- components/12-hartree_direct_3d.01.inp
- components/13-hartree_3d_mg.01-multigrid.inp
- components/15-cholesky_parallel.01-real.inp
- components/15-cholesky_parallel.02-complex.inp
- components/16-hartree_3d_psolver.01-psolver.inp
- components/16-hartree_3d_psolver.02-psolver.inp
- components/18-interpolation.01-1d.inp
- components/18-interpolation.02-2d.inp
- components/18-interpolation.03-3d.inp
- components/19-hgh_soc.01-3d.inp
- components/20-dft_u.01-real_mesh.inp
- components/20-dft_u.02-real_submesh.inp
- components/20-dft_u.03-complex_mesh.inp
- components/20-dft_u.04-complex_submesh.inp
- components/20-dft_u.05-real_mesh_unpacked.inp
- components/20-dft_u.06-real_submesh_unpacked.inp
- components/20-dft_u.07-complex_mesh_unpacked.inp
- components/20-dft_u.08-complex_submesh_unpacked.inp
- components/21-hamiltonian_apply.01-Si.inp
- components/22-density_calc.01-Si.inp
- components/23-exponential_apply.01-jellium.inp
- components/24-boundaries.01-jellium.inp
- components/25-subspace.01-jellium.inp
- components/26-batch_ops.01-jellium.inp
- components/26-batch_ops.02-jellium-complex.inp
- components/26-batch_ops.03-jellium-spinor.inp
- components/29-linear_solver.01-real.inp
- finite_systems_1d/01-hydrogen.01-ground_state.inp
- finite_systems_1d/01-hydrogen.02-excited_state.inp
- finite_systems_1d/01-hydrogen.03-dummy.inp
- finite_systems_1d/02-neon_mpi.01-ground_state-IP_par_domains.inp
- finite_systems_1d/02-neon_mpi.02-ground_state-kli_par_domains.inp
- finite_systems_1d/02-neon_mpi.03-td_calc-kli_par_states.inp
- finite_systems_1d/03-He-Hartree-Fock.01-gs.inp
- finite_systems_1d/09-morse.01-gs.inp
- finite_systems_1d/09-morse.02-unocc.inp
- finite_systems_1d/09-morse.03-td.inp
- finite_systems_2d/01-quadratic_box.01-ground_state.inp
- finite_systems_2d/01-quadratic_box.02-hartree.inp
- finite_systems_2d/01-quadratic_box.03-hartree+xc.inp
- finite_systems_2d/01-quadratic_box.04-spin_polarized.inp
- finite_systems_2d/02-fock-darwin.01-ground_state.inp
- finite_systems_2d/02-fock-darwin.02-ground_state.inp
- finite_systems_2d/02-fock-darwin.03-ground_state.inp
- finite_systems_2d/02-fock-darwin.04-ground_state.inp
- finite_systems_2d/03-helium_atom.01-ground_state.inp
- finite_systems_2d/03-helium_atom.02-ground_state.inp
- finite_systems_2d/04-biot_savart.01-gs.inp
- finite_systems_2d/05-spin_precession.01-ground_state.inp
- finite_systems_2d/05-spin_precession.02-time_propagation.inp
- finite_systems_2d/09-user_def_box.01-gs.inp
- finite_systems_3d/01-carbon_atom.01-psf_l0.inp
- finite_systems_3d/01-carbon_atom.02-psf_l1.inp
- finite_systems_3d/01-carbon_atom.03-static_field.inp
- finite_systems_3d/01-carbon_atom.04-smear.inp
- finite_systems_3d/02-curvilinear_coordinates.01-gygi.inp
- finite_systems_3d/03-magnetic.01-gs-unpolarized.inp
- finite_systems_3d/03-magnetic.02-td-unpolarized.inp
- finite_systems_3d/03-magnetic.03-gs-polarized.inp
- finite_systems_3d/03-magnetic.04-td-polarized.inp
- finite_systems_3d/03-magnetic.05-gs-spinors.inp
- finite_systems_3d/03-magnetic.06-td-spinors.inp
- finite_systems_3d/04-jellium.01-ground_state.inp
- finite_systems_3d/05-output.01-gs-set1.inp
- finite_systems_3d/05-output.02-gs.inp
- finite_systems_3d/05-output.03-convert.inp
- finite_systems_3d/05-output.04-convert-op.inp
- finite_systems_3d/06-restart.01-gs_mixrho.inp
- finite_systems_3d/06-restart.02-restart_gs_mixrho.inp
- finite_systems_3d/06-restart.03-gs_mixvhxc.inp
- finite_systems_3d/06-restart.04-restart_gs_mixvhxc.inp
- finite_systems_3d/06-restart.05-restart_gs.inp
- finite_systems_3d/06-restart.06-td_calc.inp
- finite_systems_3d/06-restart.07-restart_td_calc.inp
- finite_systems_3d/07-spin_orbit_coupling.01-hgh.inp
- finite_systems_3d/07-spin_orbit_coupling.02-rkb.inp
- finite_systems_3d/08-spin_orbit_coupling_full.01-hgh.inp
- finite_systems_3d/08-spin_orbit_coupling_full.02-rkb.inp
- finite_systems_3d/08-spin_orbit_coupling_full.03-unocc.inp
- finite_systems_3d/09-spinors.01-ground_state.inp
- finite_systems_3d/09-spinors.02-rmmdiis.inp
- finite_systems_3d/10-fullerene.01-gs.inp
- finite_systems_3d/12-forces.01-N2_gs.inp
- finite_systems_3d/12-forces.02-N2_gs.inp
- finite_systems_3d/12-forces.03-N2_gs.inp
- finite_systems_3d/13-full_potential_hydrogen.01-gs.inp
- finite_systems_3d/13-full_potential_hydrogen.02-gs-cg.inp
- finite_systems_3d/14-fullerene_unpacked.01-gs.inp
- finite_systems_3d/14-fullerene_unpacked.02-td-unpacked.inp
- finite_systems_3d/14-fullerene_unpacked.03-td-packed.inp
- finite_systems_3d/15-fullerene_stdlcao.01-gs.inp
- finite_systems_3d/16-scfinlcao_std.01-gs.inp
- finite_systems_3d/17-scfinlcao_alt.01-gs.inp
- finite_systems_3d/18-preconditioner_poisson.01-poisson.inp
- finite_systems_3d/20-eigensolver.01-cg.inp
- finite_systems_3d/20-eigensolver.02-cg_new.inp
- finite_systems_3d/20-eigensolver.03-plan.inp
- finite_systems_3d/20-eigensolver.04-evolution.inp
- finite_systems_3d/20-eigensolver.05-rmmdiis.inp
- finite_systems_3d/20-eigensolver.06-rmmdiis-noscalapack.inp
- finite_systems_3d/22-preconditioner.01-none.inp
- finite_systems_3d/22-preconditioner.02-filter.inp
- finite_systems_3d/22-preconditioner.03-jacobi.inp
- finite_systems_3d/22-preconditioner.04-multigrid.inp
- finite_systems_3d/22-preconditioner.05-multigrid_rmmdiis.inp
- finite_systems_3d/24-o2-spin.01-gs.inp
- finite_systems_3d/28-carbon_big_box.01-ground_state.inp
- finite_systems_3d/29-pcm_chlorine_anion.01-ground_state-n60.inp
- finite_systems_3d/29-pcm_chlorine_anion.02-td_prop-n60.inp
- finite_systems_3d/29-pcm_chlorine_anion.03-ground_state-n60-poisson.inp
- finite_systems_3d/29-pcm_chlorine_anion.04-ground_state-n240.inp
- finite_systems_3d/30-local_multipoles.01-gs.inp
- finite_systems_3d/30-local_multipoles.02-multipoles.inp
- finite_systems_3d/30-local_multipoles.03-multipoles_restart.inp
- finite_systems_3d/31-acetylene_b3lyp.01-gs.inp
- finite_systems_3d/32-tdpcm_methane.01-ground_state.inp
- finite_systems_3d/32-tdpcm_methane.02-td_prop_neq.inp
- finite_systems_3d/32-tdpcm_methane.03-td_prop_eom.inp
- finite_systems_3d/33-cg.01-orthogonalize_all.inp
- finite_systems_3d/33-cg.02-additional_terms.inp
- finite_systems_3d/33-cg.03-cg_direction.inp
- finite_systems_3d/35-slater_x.01-gs.inp
- finite_systems_3d/35-slater_x.02-gs_spinors.inp
- finite_systems_3d/36-kli_x.01-gs.inp
- finite_systems_3d/36-kli_x.02-gs_spinors.inp
- functionals/01-xc_1d.01-wfs-lda.inp
- functionals/01-xc_1d.02-wfs-hf.inp
- functionals/01-xc_1d.lda_csc.inp
- functionals/01-xc_1d.oep_exx.inp
- functionals/01-xc_1d.oep_kli.inp
- functionals/02-xc_2d.01-hartree.inp
- functionals/02-xc_2d.02-hf.inp
- functionals/02-xc_2d.gga_b86.inp
- functionals/02-xc_2d.gga_b86_mgc.inp
- functionals/02-xc_2d.gga_b88.inp
- functionals/02-xc_2d.gga_pbe.inp
- functionals/02-xc_2d.lda_amgb.inp
- functionals/02-xc_2d.lda_prm.inp
- functionals/03-xc.01-gs.inp
- functionals/03-xc.b3lyp_fock.inp
- functionals/03-xc.b3lyp_oep.inp
- functionals/03-xc.exx.inp
- functionals/03-xc.fbex.inp
- functionals/03-xc.gga_c_am05.inp
- functionals/03-xc.gga_c_lm.inp
- functionals/03-xc.gga_c_lyp.inp
- functionals/03-xc.gga_c_p86.inp
- functionals/03-xc.gga_c_pbe.inp
- functionals/03-xc.gga_c_pbe_jrgx.inp
- functionals/03-xc.gga_c_pbe_sol.inp
- functionals/03-xc.gga_c_pw91.inp
- functionals/03-xc.gga_c_xpbe.inp
- functionals/03-xc.gga_x_am05.inp
- functionals/03-xc.gga_x_b86.inp
- functionals/03-xc.gga_x_b86_mgc.inp
- functionals/03-xc.gga_x_b88.inp
- functionals/03-xc.gga_x_bayesian.inp
- functionals/03-xc.gga_x_dk87_r1.inp
- functionals/03-xc.gga_x_dk87_r2.inp
- functionals/03-xc.gga_x_ft97_a.inp
- functionals/03-xc.gga_x_ft97_b.inp
- functionals/03-xc.gga_x_g96.inp
- functionals/03-xc.gga_x_lb.inp
- functionals/03-xc.gga_x_lg93.inp
- functionals/03-xc.gga_x_mpbe.inp
- functionals/03-xc.gga_x_mpw91.inp
- functionals/03-xc.gga_x_optb88_vdw.inp
- functionals/03-xc.gga_x_optpbe_vdw.inp
- functionals/03-xc.gga_x_optx.inp
- functionals/03-xc.gga_x_pbe.inp
- functionals/03-xc.gga_x_pbe_jsjr.inp
- functionals/03-xc.gga_x_pbe_r.inp
- functionals/03-xc.gga_x_pbe_sol.inp
- functionals/03-xc.gga_x_pbea.inp
- functionals/03-xc.gga_x_pbek1_vdw.inp
- functionals/03-xc.gga_x_pw86.inp
- functionals/03-xc.gga_x_pw91.inp
- functionals/03-xc.gga_x_rpbe.inp
- functionals/03-xc.gga_x_wc.inp
- functionals/03-xc.gga_x_xpbe.inp
- functionals/03-xc.gga_xc_b97_d.inp
- functionals/03-xc.gga_xc_edf1.inp
- functionals/03-xc.gga_xc_hcth_120.inp
- functionals/03-xc.gga_xc_hcth_147.inp
- functionals/03-xc.gga_xc_hcth_407.inp
- functionals/03-xc.gga_xc_hcth_93.inp
- functionals/03-xc.gga_xc_mpwlyp1w.inp
- functionals/03-xc.gga_xc_pbe1w.inp
- functionals/03-xc.gga_xc_pbelyp1w.inp
- functionals/03-xc.gga_xc_xlyp.inp
- functionals/03-xc.kli.inp
- functionals/03-xc.lda_c_gl.inp
- functionals/03-xc.lda_c_hl.inp
- functionals/03-xc.lda_c_ob_pw.inp
- functionals/03-xc.lda_c_ob_pz.inp
- functionals/03-xc.lda_c_pw.inp
- functionals/03-xc.lda_c_pw_mod.inp
- functionals/03-xc.lda_c_pz.inp
- functionals/03-xc.lda_c_pz_mod.inp
- functionals/03-xc.lda_c_rpa.inp
- functionals/03-xc.lda_c_vbh.inp
- functionals/03-xc.lda_c_vwn.inp
- functionals/03-xc.lda_c_vwn_rpa.inp
- functionals/03-xc.lda_c_wigner.inp
- functionals/03-xc.lda_c_xalpha.inp
- functionals/03-xc.lda_x.inp
- functionals/03-xc.lda_xc_teter93.inp
- functionals/03-xc.mvorb_hse06_fock.inp
- functionals/03-xc.pbe0_fock.inp
- functionals/03-xc.pbe0_oep.inp
- functionals/03-xc.sic_pz.inp
- functionals/03-xc.slater.inp
- functionals/04-oep.01-jellium-lsda.inp
- functionals/04-oep.02-jellium-exx_kli.inp
- functionals/04-oep.03-jellium-full_exx.inp
- functionals/05-ks_inversion.01-target_density.inp
- functionals/05-ks_inversion.02-two_particle.inp
- functionals/05-ks_inversion.03-inversion.inp
- functionals/06-rdmft.01-ip.inp
- functionals/06-rdmft.02-gs_basis.inp
- functionals/06-rdmft.03-gs_grid.inp
- functionals/07-sic.01-gs.inp
- functionals/10-vdw_d3_dna.01-gs_novdw.inp
- functionals/10-vdw_d3_dna.02-gs_d3.inp
- functionals/12-vdw_solid_c6.01-gs_diamond.inp
- functionals/14-libvdwxc_Be_hcp.01-vdwdfcx.inp
- functionals/15-oep-CG.01-kli.inp
- functionals/15-oep-CG.02-oep-bb.inp
- functionals/16-dressed-rdmft.01-ip.inp
- functionals/16-dressed-rdmft.02-hf.inp
- functionals/16-dressed-rdmft.03-rdmft.inp
- functionals/17-oep-photons.01-kli-spinpolarized.inp
- functionals/17-oep-photons.02-kli.inp
- functionals/17-oep-photons.03-oep.inp
- functionals/18-mgga.01-br89.inp
- functionals/18-mgga.02-br89_oep.inp
- lda_u/01-nio.01-U5-gs.inp
- lda_u/01-nio.02-unocc.inp
- lda_u/02-ACBN0.01-nio.inp
- lda_u/02-ACBN0.02-lif.inp
- lda_u/03-ACBN0_restricted.01-lif.inp
- lda_u/03-ACBN0_restricted.02-lif_unpacked.inp
- lda_u/05-forces.01-Na2.inp
- lda_u/05-forces.02-Na2_go.inp
- lda_u/06-laser.01-gs.inp
- lda_u/06-laser.02-length_gauge.inp
- lda_u/06-laser.03-velocity_gauge.inp
- lda_u/07-noncollinear.01-U5-gs.inp
- lda_u/07-noncollinear.02-acbn0.inp
- lda_u/08-loewdin.01-Si.inp
- lda_u/08-loewdin.02-intersite.inp
- lda_u/08-loewdin.03-intersite_domains.inp
- lda_u/09-basis_from_states.01-lda.inp
- lda_u/09-basis_from_states.02-acbn0.inp
- lda_u/10-intersite.01-Na2.inp
- lda_u/11-full_delta.01-gs.inp
- linear_response/01-casida.01-gs.inp
- linear_response/01-casida.02-vib_modes.inp
- linear_response/01-casida.03-unocc.inp
- linear_response/01-casida.04-unocc_restart.inp
- linear_response/01-casida.05-casida.inp
- linear_response/01-casida.06-casida_scalapack.inp
- linear_response/01-casida.07-casida_elpa.inp
- linear_response/01-casida.08-casida_restart.inp
- linear_response/01-casida.09-spectrum.inp
- linear_response/02-h2o_pol_lr.01_h2o_gs.inp
- linear_response/02-h2o_pol_lr.02_h2o_dyn_pol.inp
- linear_response/02-h2o_pol_lr.03_h2o_dyn_pol_cmplx.inp
- linear_response/02-h2o_pol_lr.04_h2o_susc.inp
- linear_response/02-h2o_pol_lr.05_h2o_magn_opt.inp
- linear_response/03-vdw_sternheimer.01-ground_state.inp
- linear_response/03-vdw_sternheimer.02-vdw.inp
- linear_response/04-vib_modes.01-ground_state.inp
- linear_response/04-vib_modes.02-vib_modes.inp
- linear_response/04-vib_modes.03-vib_modes_restart.inp
- linear_response/06-vib_modes_fd.01-ground_state.inp
- linear_response/06-vib_modes_fd.01-vib_modes_fd.inp
- linear_response/07-casida-photons.01-gs.inp
- linear_response/07-casida-photons.02-photons.inp
- linear_response/07-casida-photons.03-scalapack.inp
- linear_response/07-casida-photons.04-elpa.inp
- linear_response/07-casida-photons.05-elpa-parother.inp
- linear_response/07-casida-photons.06-spectrum.inp
- linear_response/08-sternheimer-photons.01-gs.inp
- linear_response/08-sternheimer-photons.02-em_resp.inp
- maxwell/07-mode-resolved-maxwell-ks-propagation.01-1D-Helium-ground-state.inp
- maxwell/07-mode-resolved-maxwell-ks-propagation.02-kick-of-the-electronic-subsystem.inp
- modelmb/01-cosh_2e_1d.01-gs.inp
- modelmb/01-cosh_2e_1d.02-td.inp
- modelmb/02-qd_2e_2d.01-gs.inp
- modelmb/02-qd_2e_2d.02-td.inp
- multisystem/12-electronic_subsystem_propagators.01-gs.inp
- multisystem/12-electronic_subsystem_propagators.02-expmid.inp
- multisystem/99-carbon_hydrogen.01-gs.inp
- multisystem/99-carbon_hydrogen.02-td.inp
- multisystem/99-carbon_hydrogen.03-td_restart.inp
- optimal_control/01-asym_doublewell.01-ground_state.inp
- optimal_control/01-asym_doublewell.02-unocc.inp
- optimal_control/01-asym_doublewell.03-oct_run.inp
- optimal_control/01-asym_doublewell.04-oct_run.inp
- optimal_control/01-asym_doublewell.05-oct_run.inp
- optimal_control/02-sym_doublewell.01-ground_state.inp
- optimal_control/02-sym_doublewell.02-unocc.inp
- optimal_control/02-sym_doublewell.03-oct.inp
- optimal_control/03-localtarget.01-gs.inp
- optimal_control/03-localtarget.02-oct.inp
- optimal_control/03-localtarget.03-tdoct.inp
- optimal_control/03-localtarget.04-gs-mp.inp
- optimal_control/03-localtarget.05-oct-mp.inp
- optimal_control/04-box.01-ground_state.inp
- optimal_control/04-box.02-unocc.inp
- optimal_control/04-box.03-oct_long.inp
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