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Questaal Home
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- Tutorials
- Tutorial Index
- Overview
- Generating Input Files
- DFT
- Basic Introduction: Si
- Detailed Introduction: Lead Telluride
- Detailed Introduction: The Input File
- Plotting Energy Bands
- Finding Extremal Points and Effective Mass
- Making Partial Densities-of-States and EELS
- Plotting Charge Densities
- Performing Molecular Statics
- lmf Basis Set and Convergence
- Adding Augmented Plane Waves
- Basis Set Optimisation
- Noncollinear fcc iron, bands and spin texture
- GW
- QSGW + DMFT
- QSGW+DMFT with TRIQS
- Loading the QSGW Hamiltoninan in a Python Notebook
- Introduction
- Setting up the DMFT Loop
- Running the DMFT Loop
- Issues with Input and Parameters
- Charge + Static-magnetic Contributions
- The Density Loop
- The Maximum Entropy Method
- The Self-energy Loop and the Dynamical Double-counting
- Analyzing Spectral Functions
- Tight Binding
- DFT-ASA
- ASA Crystal Green Functions
- ASA Layer Green Functions
- Physical Application
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More Articles
- Interaction between magnetic field and excitons in CrSBr
- Correlating Optical and Structural Properties of CO on Transition Metal Surfaces
- Good Plasmons in a Bad Metal
- Magnetically confined surface excitons in a layered antiferromagnet
- Hyperbolic Exciton Polaritons
- Electronic structure of CrSBr: theory and experiment
- Why TiSe2 is a band insulator, not an excitonic insulator
- 5th Questaal School
- First principles vs second principles description of strongly correlated systems
- Origins of Superconductivity in FeSe
- Excitons in Cr{Cl,Br,I}₃
- An embedding scheme within the Quasiparticle Self-consistent GW approximation
- 4th Daresbury Questaal School
- First-principles supercurrent calculations in realistic magnetic Josephson junctions
- Magnetism of Yttrium Iron Garnet
- Origins of Superconductivity in LaFe2As2 and CaFe2As2
- More Articles