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NMAXFOCKAE: Difference between revisions

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Removed redirect to NMAXFOCKAE and LMAXFOCKAE
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#REDIRECT [[NMAXFOCKAE and LMAXFOCKAE]]
{{TAGDEF|NMAXFOCKAE|1{{!}}2|1}}
{{TAGDEF|NMAXFOCKAE|1{{!}}2|1}}


Description: {{TAG|NMAXFOCKAE}} and {{TAG|LMAXFOCKAE}} determine whether
Description: {{TAG|NMAXFOCKAE}} determines the maximum order of expansion for augmentation charges used in [[LMAXFOCKAE|shape restoration]] for the [[Projector-augmented-wave_formalism|PAW method]].
the overlap densities in the Fock exchange and correlated wave function methods are accurately reconstructed on the plane wave grid. This flag generally only applies to the Fock-exchange part as well as many-body
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post DFT methods (GW, RPA, MP2, etc.). Details can be found in the section {{TAG|LMAXFOCKAE}}.
{{TAG|NMAXFOCKAE}} controls how accurately this augmentation is performed by specifying the maximum expansion order. It controls the plane-wave cutoff up to which accurate charge densities are restored on the plane-wave grid. Shape restoration is only accurate up to a certain plane-wave cutoff, typically about 150 eV for {{TAG|NMAXFOCKAE|1}}, and 400 eV for {{TAG|NMAXFOCKAE|2}}.
{{NB|important|Shape restoration is more fully documented in the {{TAG|LMAXFOCKAE}} page. Additionally, see Ref. {{cite|shishkin:prb:2006}} and {{cite|unzog:prb:2022}}.}}
{{NB|mind|This flag generally only applies to the Fock-exchange and [[:Category:Many-body_perturbation_theory|many-body perturbation theory]] (MBPT) methods ([[GW approximation of Hedin's equations|GW]], [[ACFDT/RPA calculations|RPA]], [[MP2]], etc.).}}


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== Recommendations ==
*{{TAG|NMAXFOCKAE|1}} is sufficient in most cases and provides a good balance between accuracy and computational cost. It predicts very accurate energy differences and quite accurate quasiparticle energies.
*{{TAG|NMAXFOCKAE|2}} should be used with great caution. Specifically, noise and egg-box effects for coarse FFT grids are introduced as {{TAG|NMAXFOCKAE}} is increased. Use this flag only after extensive tests and verification that the increased accuracy is needed for your application. It yields very accurate results for post-DFT methods (MP2, RPA, GW) even for difficult 3''d'' elements.
**For [[GW approximation of Hedin's equations|GW calculations]], increasing from {{TAG|NMAXFOCKAE|1}} to {{TAG|NMAXFOCKAE|2}} might change quasiparticle energies by 100-200 meV for 3''d'' and late 4''d'' and 5''d'' elements.
**For [[ACFDT/RPA calculations|RPA]] and [[MP2|MP2]] total energy calculations, differences between {{TAG|NMAXFOCKAE|1}} and {{TAG|NMAXFOCKAE|2}} are usually small for total energy differences. {{NB|mind|Since absolute correlation energies might change, it is vital to use the same setting for {{TAG|NMAXFOCKAE}} and {{TAG|LMAXFOCKAE}}, if energy differences are calculated. Please check whether the VASP default setting for {{TAG|LMAXFOCKAE}} suffices ({{FILE|OUTCAR}} file). Use this setting only with care, as it can result in very noisy data for coarse FFT grids.|::}}


== Related tags and articles ==
{{TAG|NMAXFOCKAE}}, {{TAG|LMAXFOCK}}, {{TAG|QMAXFOCKAE}}, {{TAG|LFOCKAEDFT}}, {{TAG|LFOCKSTD}}


== Related Tags and Sections ==
{{sc|NMAXFOCKAE|Examples|Examples that use this tag}}
{{TAG|LMAXFOCK}}, {{TAG|LMAXFOCKAE}}, {{TAG|LFOCKAEDFT}}
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[[The_VASP_Manual|Contents]]


[[Category:INCAR]][[Category:Hybrids]][[Category:GW]]
== References ==
[[Category:INCAR tag]]
[[Category:ACFDT]]
[[Category:Low-scaling GW and RPA]]
[[Category:Exchange-correlation functionals]]
[[Category:Hybrid functionals]]
[[Category:Many-body perturbation theory]]
[[Category:GW]]

Latest revision as of 13:41, 22 July 2026

NMAXFOCKAE = 1|2
Default: NMAXFOCKAE = 1 

Description: NMAXFOCKAE determines the maximum order of expansion for augmentation charges used in shape restoration for the PAW method.


NMAXFOCKAE controls how accurately this augmentation is performed by specifying the maximum expansion order. It controls the plane-wave cutoff up to which accurate charge densities are restored on the plane-wave grid. Shape restoration is only accurate up to a certain plane-wave cutoff, typically about 150 eV for NMAXFOCKAE = 1, and 400 eV for NMAXFOCKAE = 2.

Recommendations

  • NMAXFOCKAE = 1 is sufficient in most cases and provides a good balance between accuracy and computational cost. It predicts very accurate energy differences and quite accurate quasiparticle energies.
  • NMAXFOCKAE = 2 should be used with great caution. Specifically, noise and egg-box effects for coarse FFT grids are introduced as NMAXFOCKAE is increased. Use this flag only after extensive tests and verification that the increased accuracy is needed for your application. It yields very accurate results for post-DFT methods (MP2, RPA, GW) even for difficult 3d elements.

Related tags and articles

NMAXFOCKAE, LMAXFOCK, QMAXFOCKAE, LFOCKAEDFT, LFOCKSTD

Examples that use this tag

References