User contributions for Kaltakm
27 March 2025
- 15:2515:25, 27 March 2025 diff hist +51 WANPROJ No edit summary
- 15:2515:25, 27 March 2025 diff hist +51 LWANNIER90 RUN No edit summary current
- 15:2415:24, 27 March 2025 diff hist +51 LWANNIER90 No edit summary current
- 15:2415:24, 27 March 2025 diff hist +51 NUM WANN No edit summary current
- 15:2315:23, 27 March 2025 diff hist −10 DMFT BASIS No edit summary
- 15:2315:23, 27 March 2025 diff hist +4 DMFT BASIS No edit summary
- 15:2115:21, 27 March 2025 diff hist +35 VCUTOFF →Related tags and articles current
- 15:1715:17, 27 March 2025 diff hist 0 File:CRPA of SrVO3.zip Kaltakm uploaded a new version of File:CRPA of SrVO3.zip current
- 15:0915:09, 27 March 2025 diff hist +1,572 CRPA of SrVO3 No edit summary
- 15:0015:00, 27 March 2025 diff hist +288 N File:SrVO3 U omega acont.png Effectively screened Coulomb interaction (one-site) of SrVO3 evaluated in minimal Wannier basis using 3 t2g states centered on V. The real-frequency dependence has been obtained from 24 imaginary (compressed) Matsubara points evaluated using the euclidean GW implementation. current
- 13:4213:42, 27 March 2025 diff hist +51 NOMEGA DUMP No edit summary current
- 13:4113:41, 27 March 2025 diff hist +130 CRPA of SrVO3 →cRPA calculation on Matsubara axis
- 13:3913:39, 27 March 2025 diff hist +4 CRPA of SrVO3 →Off-centre Coulomb integrals
- 13:3813:38, 27 March 2025 diff hist +1,636 CRPA of SrVO3 No edit summary
- 13:3013:30, 27 March 2025 diff hist −54 CRPA of SrVO3 →cRPA Calculation
- 13:1513:15, 27 March 2025 diff hist +190 CRPA of SrVO3 →cRPA Calculation
- 13:1213:12, 27 March 2025 diff hist +212 CRPA of SrVO3 →Obtain DFT virtual orbitals and long-wave limit
- 13:1113:11, 27 March 2025 diff hist +72 CRPA of SrVO3 →DFT groundstate calculation
- 12:5612:56, 27 March 2025 diff hist 0 GW and ACFDT - Tutorial No edit summary current
- 12:5512:55, 27 March 2025 diff hist 0 GW and ACFDT - Tutorial No edit summary
- 12:5312:53, 27 March 2025 diff hist 0 CRPA of SrVO3 →Task
- 12:5012:50, 27 March 2025 diff hist −42 Constrained–random-phase–approximation formalism No edit summary
- 12:2212:22, 27 March 2025 diff hist +57 CRPA of SrVO3 No edit summary
- 12:2012:20, 27 March 2025 diff hist −22 CRPA of SrVO3 →cRPA calculation with spacetime Algorithm
- 12:1912:19, 27 March 2025 diff hist +91 CRPA of SrVO3 No edit summary
- 12:1312:13, 27 March 2025 diff hist +1 Constrained–random-phase–approximation formalism →Off-centre interactions
- 12:1212:12, 27 March 2025 diff hist −23 Constrained–random-phase–approximation formalism →Off-centre interactions
- 12:1112:11, 27 March 2025 diff hist −1 Constrained–random-phase–approximation formalism →Off-centre interactions
- 12:1112:11, 27 March 2025 diff hist +228 Constrained–random-phase–approximation formalism →Off-centre interactions
- 12:1012:10, 27 March 2025 diff hist 0 Constrained–random-phase–approximation formalism →Off-centre Interactions
- 12:0812:08, 27 March 2025 diff hist 0 Category:Many-body perturbation theory →Constrained random-phase approximation current
- 12:0812:08, 27 March 2025 diff hist 0 The VASP Manual →Featured topics
26 March 2025
- 16:0516:05, 26 March 2025 diff hist 0 URijkl No edit summary
- 16:0416:04, 26 March 2025 diff hist +864 N URijkl Created page with "This file stores the effectively screened off-centre Coulomb integrals ::<math> U_{ijkl}^{\sigma\sigma'} = \int {\rm d}{\bf r}\int {\rm d}{\bf r}' w_{i}^{*\sigma}({\bf r}) w_{j}^{\sigma}({\bf r}) U({\bf r},{\bf r}',\omega) w_{k}^{*\sigma'}({\bf r}+{\bf R}) w_{l}^{\sigma'}({\bf r}+{\bf R}) </math> The format is as follows: # U_ijkl = [ij,R|kl,0] # I J K L RE(V_IJKL) IM(V_IJKL) # R: 1 0.000000 0.000000 0.000000 1 1 1 1 1..."
- 16:0216:02, 26 March 2025 diff hist +40 VRijkl No edit summary
- 16:0216:02, 26 March 2025 diff hist +714 N VRijkl Created page with "This file stores the off-centre Coulomb integrals ::<math> V_{ijkl}^{\sigma\sigma'} = \int {\rm d}{\bf r}\int {\rm d}{\bf r}' \frac{ w_{i}^{*\sigma}({\bf r}) w_{j}^{\sigma}({\bf r}) w_{k}^{*\sigma'}({\bf r}+{\bf R}) w_{l}^{\sigma'}({\bf r}+{\bf R})}{|{\bf r}-{\bf r}'|} </math> The format is as follows: # V_ijkl = [ij,R|kl,0] # I J K L RE(V_IJKL) IM(V_IJKL) # R: 1 0.000000 0.000000 0.000000 1 1 1 1 14.4576272582..."
- 15:5515:55, 26 March 2025 diff hist +8 Constrained–random-phase–approximation formalism →Off-centre Interactions
- 15:5215:52, 26 March 2025 diff hist +20 Constrained–random-phase–approximation formalism →Related tags and articles
- 15:5215:52, 26 March 2025 diff hist +59 Constrained–random-phase–approximation formalism →Off-centre Interactions
- 15:5015:50, 26 March 2025 diff hist +309 Constrained–random-phase–approximation formalism →Off-centre Interactions
- 15:3315:33, 26 March 2025 diff hist +819 Constrained–random-phase–approximation formalism No edit summary
- 15:1315:13, 26 March 2025 diff hist +2 Constrained–random-phase–approximation formalism →Caveats
25 March 2025
- 15:4315:43, 25 March 2025 diff hist −60 Constrained–random-phase–approximation formalism →Effective Coulomb kernel in constrained random-phase approximation
- 15:3815:38, 25 March 2025 diff hist −14 Constrained–random-phase–approximation formalism →Parameter definitions
- 15:3715:37, 25 March 2025 diff hist −1 Constrained–random-phase–approximation formalism No edit summary
- 15:3315:33, 25 March 2025 diff hist −11 Constrained–random-phase–approximation formalism Undo revision 30166 by Kaltakm (talk) Tag: Undo
- 15:2115:21, 25 March 2025 diff hist +78 Construction:LSCRPA No edit summary current
- 15:0415:04, 25 March 2025 diff hist +16 LWEIGHTED →Related tags and articles current
- 15:0415:04, 25 March 2025 diff hist +17 LDISENTANGLED →Related tags and articles current
- 15:0315:03, 25 March 2025 diff hist +1,662 N Construction:LSCRPA Created page with "{{TAGDEF|LSCRPA|[logical]|.FALSE.}} Description: {{TAG|LSCRPA}} selects the spectral cRPA method. ---- Selects the spectral cRPA method where following screening effects are subtracted from the full RPA polarizability ::<math>\tilde \chi^\sigma_{{\bf G,G}'}({\bf q},i\omega)\approx \frac 1{N_k}\sum_{nn'{\bf k}} \frac{ f_{n\bf k}-f_{n'\bf k-q} }{ \epsilon_{n{\bf k}} - \epsilon_{n'\bf k-q} - i \ome..."