VASP: Difference between revisions
No edit summary |
No edit summary |
||
| Line 15: | Line 15: | ||
P4v: [[http://cms.mpi.univie.ac.at/odubay/p4vasp_site/news.php]] | P4v: [[http://cms.mpi.univie.ac.at/odubay/p4vasp_site/news.php]] | ||
[[VASP- | Current versions: [[VASP-Current| Current versions]] | ||
Revision as of 11:50, 4 June 2007
VASP
VASP is a complex package for performing ab-initio quantum-mechanical molecular dynamics (MD) simulations using pseudopotentials or the projector-augmented wave method and a plane wave basis set. The approach implemented in VASP is based on the (finite-temperature) local-density approximation with the free energy as variational quantity and an exact evaluation of the instantaneous electronic ground state at each MD time step. VASP uses efficient matrix diagonalisation schemes and an efficient Pulay/Broyden charge density mixing. These techniques avoid all problems possibly occurring in the original Car-Parrinello method, which is based on the simultaneous integration of electronic and ionic equations of motion. The interaction between ions and electrons is described by ultra-soft Vanderbilt pseudopotentials (US-PP) or by the projector-augmented wave (PAW) method. US-PP (and the PAW method) allow for a considerable reduction of the number of plane-waves per atom for transition metals and first row elements. Forces and the full stress tensor can be calculated with VASP and used to relax atoms into their instantaneous ground-state.
link to the on-line manual: [[1]]
link to the notes: [[2]]
link to the VTST packages: [[3]]
link to the tools: [[4]]
P4v: [[5]]
Current versions: Current versions