Relevance of complete Coulomb interaction matrix for the Kondo problem: Co impurity on Cu(111)
arXiv:0905.3581 · doi:10.1103/PhysRevB.80.155132
Abstract
The electronic structure of a prototype Kondo system, a cobalt impurity in a copper host is calculated with accurate taking into account of correlation effects on the Co atom. Using the recently developed continuous-time QMC technique, it is possible to describe the Kondo resonance with a complete four-index Coulomb interaction matrix. This opens a way for completely first-principle calculations of the Kondo temperature. We have demonstrated that a standard practice of using a truncated Hubbard Hamiltonian to consider the Kondo physics can be quantitatively inadequate.
6 pages, 4 figures
References in corpus (9)
- The numerical renormalization group method for quantum impurity systems
- Plane-wave based electronic structure calculations for correlated materials using dynamical mean-field theory and projected local orbitals
- Theory of quasiparticle spectra for Fe, Co, and Ni: bulk and surface
- Diagrammatic Determinantal methods: projective schemes and applications to the Hubbard-Holstein model
- Correlation effects in total energy of transition metals and related properties
- Kondo decoherence: finding the right spin model for iron impurities in gold and silver
- Controlling the Kondo Effect in CoCu_n Clusters Atom by Atom
- Kondo effect in single atom contacts: the importance of the atomic geometry
- Orbital magnetism in transition-metal systems: The role of local correlation effects
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