Many-body effects influence the energy versus momentum relation that is measured in angle-resolved photoemission experiments and the quasi-particle band structure may be significantly different from what is deduced within the independent particle model. In the case of cobalt many body effects are even more drastic than an energy renormalization giving rise to a quenching of quasi-particle peaks. Augmenting ab-initio band structure with many-body e-e interactions, we have obtained spin- and k-dependent self-energies, hole spectral functions and quasi-particle energies to be compared with photoemission spectra; our results show that e-e correlations are responsible for strong spin-dependent energy renormalizations
We study how the k dependence in the self-energy affects the quasiparticle band structure and one-pa...
High-resolution angle-resolved photoelectron spectroscopy of ferromagnetic Ni(110) has been conducte...
The strength of electronic correlation effects in the spin-dependent electronic structure of ferroma...
Many-body effects influence the energy versus momentum relation that is measured in angle-resolved p...
Many body effects influence the energy-versus-momentum relation that is measured in angle resolved p...
We report on a quantitative investigation of the spin-dependent quasiparticle lifetimes and electron...
We have investigated the spin dependent quasiparticle lifetimes and the strength of electron correla...
The low-energy electronic excitations in cobalt are studied by a theoretical method that includes ma...
We have investigated the spin-dependent quasiparticle lifetimes and the strength of electron correla...
Many-body effects influence the energy-versus-momentum relation that is measured in angle resolvedph...
Contains fulltext : 103323.pdf (publisher's version ) (Open Access
Using high resolution angle resolved photoemission, we observe a strong spin dependent renormalizati...
Our understanding of the properties of ferromagnetic materials, widely used in spintronic devices, i...
We study the electron-magnon scattering in bulk Fe, Co, and Ni within the framework of many-body per...
I report on the combination of two powerful self-energy techniques: the well-known GW method and a s...
We study how the k dependence in the self-energy affects the quasiparticle band structure and one-pa...
High-resolution angle-resolved photoelectron spectroscopy of ferromagnetic Ni(110) has been conducte...
The strength of electronic correlation effects in the spin-dependent electronic structure of ferroma...
Many-body effects influence the energy versus momentum relation that is measured in angle-resolved p...
Many body effects influence the energy-versus-momentum relation that is measured in angle resolved p...
We report on a quantitative investigation of the spin-dependent quasiparticle lifetimes and electron...
We have investigated the spin dependent quasiparticle lifetimes and the strength of electron correla...
The low-energy electronic excitations in cobalt are studied by a theoretical method that includes ma...
We have investigated the spin-dependent quasiparticle lifetimes and the strength of electron correla...
Many-body effects influence the energy-versus-momentum relation that is measured in angle resolvedph...
Contains fulltext : 103323.pdf (publisher's version ) (Open Access
Using high resolution angle resolved photoemission, we observe a strong spin dependent renormalizati...
Our understanding of the properties of ferromagnetic materials, widely used in spintronic devices, i...
We study the electron-magnon scattering in bulk Fe, Co, and Ni within the framework of many-body per...
I report on the combination of two powerful self-energy techniques: the well-known GW method and a s...
We study how the k dependence in the self-energy affects the quasiparticle band structure and one-pa...
High-resolution angle-resolved photoelectron spectroscopy of ferromagnetic Ni(110) has been conducte...
The strength of electronic correlation effects in the spin-dependent electronic structure of ferroma...