Quantum chemical insights into hexaboride electronic structures: correlations within the boron -orbital subsystem
arXiv:2211.05571 · doi:10.1038/s42005-022-00979-z
Abstract
The notion of strong electronic correlations arose in the context of -metal oxides such as NiO but can be exemplified on systems as simple as the H molecule. Here we shed light on correlation effects on B clusters as found in B hexaborides and show that the B 2 valence electrons are fairly correlated. B-octahedron excitation energies computed for CaB and YbB agree with peak positions found by resonant inelastic x-ray scattering, providing a compelling picture for the latter. Our findings characterize these materials as very peculiar -electron correlated systems and call for more involved many-body investigations within the whole hexaboride family, both alkaline- and rare-earth compounds, not only for - but also ()-states defining e. g. band gaps.
7 pages, 3 figures
References in corpus (18)
- Strength of effective Coulomb interactions in graphene and graphite
- Low-energy spectrum of iron-sulfur clusters directly from many-particle quantum mechanics
- Superconductivity mediated by a soft phonon mode: specific heat, resistivity, thermal expansion and magnetization of YB6
- Multipolar phases and magnetically hidden order: Review of the heavy-fermion compound Ce(1-x)La(x)B6
- Non-Kondo-like Electronic Structure in the Correlated Rare-Earth Hexaboride YbB
- 4 crystal field ground state of the strongly correlated topological insulator SmB
- Electronic structure of YbB: Is it a Topological Insulator or not?
- Pressure-induced quantum phase transitions in topological insulator YbB6
- Spin-state transition and spin-polaron physics in cobalt oxide perovskites: ab initio approach based on quantum chemical methods
- Fermiology of Cuprates from First Principles: From Small Pockets to the Luttinger Fermi surface
- Ab initio wavefunction based methods for excited states in solids: correlation corrections to the band structure of ionic oxides
- A RIXS investigation of the crystal-field splitting of Sm in SmB
- Crystal structures of dodecaborides: complexity in simplicity
- Magnetism, quantum criticality, and metal-insulator transitions in
- Neutron-scattering studies of spin dynamics in pure and doped CeB6
- Electron correlation effects in diamond: a wave-function quantum chemistry study of the quasiparticle band structure
- Ground-state wavefunction of macroscopic electron systems
- Ground state of many-electron systems based on the action function