LFINITE TEMPERATURE: Difference between revisions
(Created page with "{{TAGDEF|LFINITE_TEMPERATURE|[logical]|.FALSE.}} Description: {{TAG|LWAVE}} determines whether the wavefunctions are written to the {{TAG|WAVECAR}} file at the end of a run....") |
No edit summary |
||
Line 1: | Line 1: | ||
{{TAGDEF|LFINITE_TEMPERATURE|[logical]|.FALSE.}} | {{TAGDEF|LFINITE_TEMPERATURE|[logical]|.FALSE.}} | ||
Description: {{TAG| | Description: {{TAG|LFINITE_TEMPERATURE}} determines whether the finite or or zero Temperature formalism is used for ACFDT/GW algorithms. | ||
== Related Tags and Sections == | == Related Tags and Sections == | ||
{{TAG|NOMEGA}}, | {{TAG|NOMEGA}}, | ||
{{TAG|NOMEGAPAR}}, | {{TAG|NOMEGAPAR}}, | ||
{{TAG|NTAUPAR}} | {{TAG|NTAUPAR}} | ||
---- | ---- | ||
[[Category:INCAR]][[Category:Many-Body Perturbation Theory]] [[Category:GW]] [[Category:ACFDT]][[Category:Low-scaling GW and RPA]][[Category:VASP6]] | [[Category:INCAR]][[Category:Many-Body Perturbation Theory]] [[Category:GW]] [[Category:ACFDT]][[Category:Low-scaling GW and RPA]][[Category:VASP6]] |
Revision as of 12:31, 16 June 2020
LFINITE_TEMPERATURE = [logical]
Default: LFINITE_TEMPERATURE = .FALSE.
Description: LFINITE_TEMPERATURE determines whether the finite or or zero Temperature formalism is used for ACFDT/GW algorithms.