The VASP Manual: Difference between revisions
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! scope="col" class="unsortable" style="padding:5px; border-style: solid; border-width: 15px; border-color: white" | ''subtopics (amongst others)'' | ! scope="col" class="unsortable" style="padding:5px; border-style: solid; border-width: 15px; border-color: white" | ''subtopics (amongst others)'' | ||
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|style="background-color:#DEC4EB; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Theory| Theoretical background]]|| style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| | |style="background-color:#DEC4EB; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Theory| Theoretical background]]|| style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| We collect '''theory pages''' from all the different areas VASP offers functionalities. These can also be found in the corresponding category of the topic. For instance, the article on the [[Blocked-Davidson algorithm]] is also linked from the [[electronic minimization]] page. | ||
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|style="background-color:#DEC4EB; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Calculation setup| Calculation setup]] || style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white" | | |style="background-color:#DEC4EB; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Calculation setup| Calculation setup]] || style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white" | The '''computational setup''' considers the [[installation]], the input and output [[files]], [[performance]], etc. To learn how to set up your calculation, it is probably best to look for a [[:Category:Howto|how-to page]], e.g., [[band-structure calculation using hybrid functionals]], [[constructing Wannier orbitals]], [[structure optimization]], etc. | ||
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|style="background-color:#F1B3BA; padding:5px; border-style: solid; border-width: 15px; border-color: white"|[[:Category:Electronic minimization| Electronic minimization]]|| style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| '''Electronic minimization''' is the central task in many calculations. Here, you find pages describing the [[self-consistency cycle]], different algorithms, e.g., [[blocked-Davidson algorithm]], [[RMM-DIIS]], [[direct optimization of the orbitals]], and related topics like [[preconditioning]], [[density mixing]], etc. | |style="background-color:#F1B3BA; padding:5px; border-style: solid; border-width: 15px; border-color: white"|[[:Category:Electronic minimization| Electronic minimization]]|| style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| '''Electronic minimization''' is the central task in many calculations. Here, you find pages describing the [[self-consistency cycle]], different algorithms, e.g., [[blocked-Davidson algorithm]], [[RMM-DIIS]], [[direct optimization of the orbitals]], and related topics like [[preconditioning]], [[density mixing]], etc. | ||
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|style="background-color:#BBCCF5; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Linear response| Response theory]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| Static and frequency-dependent [[:Category:Dielectric properties|dielectric properties]], Berry phases, spectroscopy (UV, VIS, X-ray), [[:Category:Phonons|phonons]], etc. | |style="background-color:#BBCCF5; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Linear response| Response theory]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| Static and frequency-dependent [[:Category:Dielectric properties|dielectric properties]], Berry phases, spectroscopy (UV, VIS, X-ray), [[:Category:Phonons|phonons]], etc. | ||
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|style="background-color:#BBCCF5; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Many-body perturbation theory| Many-body perturbation theory]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| ACFDT, BSE, GW, MP2, | |style="background-color:#BBCCF5; padding:5px; border-style: solid; border-width: 15px; border-color: white"| [[:Category:Many-body perturbation theory| Many-body perturbation theory]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| ACFDT, BSE, GW, MP2, cRPA. | ||
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<!--| [[:Category:Defects| Defects and doping]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| Dipole corrections for defects in solids, VCA, etc. | <!--| [[:Category:Defects| Defects and doping]]||style="background: white; padding:5px; border-style: solid; border-width: 15px; border-color: white"| Dipole corrections for defects in solids, VCA, etc. |
Latest revision as of 06:48, 7 April 2025
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Featured topics
Category | subtopics (amongst others) |
---|---|
Theoretical background | We collect theory pages from all the different areas VASP offers functionalities. These can also be found in the corresponding category of the topic. For instance, the article on the Blocked-Davidson algorithm is also linked from the electronic minimization page. |
Calculation setup | The computational setup considers the installation, the input and output files, performance, etc. To learn how to set up your calculation, it is probably best to look for a how-to page, e.g., band-structure calculation using hybrid functionals, constructing Wannier orbitals, structure optimization, etc. |
Electronic minimization | Electronic minimization is the central task in many calculations. Here, you find pages describing the self-consistency cycle, different algorithms, e.g., blocked-Davidson algorithm, RMM-DIIS, direct optimization of the orbitals, and related topics like preconditioning, density mixing, etc. |
Electronic ground-state properties | Band structure, density of states, partial DOS and on-site charge and magnetization (LORBIT), electrostatics, charge density, potential, etc. |
Spin degree of freedom | Spin-orbit coupling, noncollinear magnetism, spin spirals, constrained magnetism, etc. |
Exchange-correlation functionals | LDA, GGA, meta-GGA, DFT+U, hybrid functionals, van der Waals functionals. |
Symmetry and structure | Crystal symmetry, reciprocal space, surfaces, pair-correlation function for liquids, etc. |
Ionic minimization | Structure optimization, ionic-minimization methods, forces, transition states, etc. |
Molecular dynamics | Barostats, thermostats, ensembles, etc. |
Ensemble properties | Monitoring geometric parameters, pair-correlation function, thermal conductivity, diffusion, etc. |
Advanced molecular-dynamics sampling | Interface pinning, constrained molecular dynamics, metadynamics, thermodynamic integration, etc. |
Machine-learned force fields | Training and application of force fields. |
Phonons | Lattice vibrations, finite differences, phonon dispersion relation. |
Electron-phonon interactions | Band-structure renormalization, transport, stochastic sampling. |
Response theory | Static and frequency-dependent dielectric properties, Berry phases, spectroscopy (UV, VIS, X-ray), phonons, etc. |
Many-body perturbation theory | ACFDT, BSE, GW, MP2, cRPA. |
Localized basis and projection | Obtaining Wannier functions, SCDM, partial DOS and on-site charge and magnetization (LORBIT), Constrained-random-phase approximation |
Performance | Parallelization, memory management, profiling, etc. |
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If you have questions or run into trouble, please have a look at the known issues and/or post a question on the VASP Forum.
Mind: We offer support on a courtesy basis only, not as a contractual service. |