Author:
Petersen Thorben,Prodan Lilian,Geirhos Korbinian,Nakamura Hiroyuki,Kézsmárki István,Hozoi Liviu
Abstract
AbstractThe lacunar-spinel chalcogenides exhibit magnetic centers in the form of transition-metal tetrahedra. On the basis of density-functional computations, the electronic ground state of an Mo413+ tetrahedron has been postulated as single-configuration a12 e4 t25, where a1, e, and t2 are symmetry-adapted linear combinations of single-site Mo t2g atomic orbitals. Here we unveil the many-body tetramer wave-function: we show that sizable correlations yield a weight of only 62% for the a12 e4 t25 configuration. While spin–orbit coupling within the peculiar valence orbital manifold is still effective, the expectation value of the spin–orbit operator and the g factors deviate from figures describing nominal t5jeff = 1/2 moments. As such, our data documents the dressing of a spin–orbit jeff = 1/2 object with intra-tetramer excitations. Our results on the internal degrees of freedom of these magnetic moments provide a solid theoretical starting point in addressing the intriguing phase transitions observed at low temperatures in these materials.
Funder
Deutsche Forschungsgemeinschaft
Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden (IFW)
Publisher
Springer Science and Business Media LLC
Cited by
3 articles.
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