paper

Interplay between crystal structure and magnetism in CeCrB

arXiv:2608.28238

Abstract

CeCrB belongs to the family of MTB ternary metal borides, some of whose magnetic phases have recently been identified as quantum spin dimers. Employing density functional theory within the GGA+ framework, this work investigates the key ground-state properties of this system, including its ferromagnetic ground state, the mixed-valence nature of cerium, and the charge transfer from the cationic cerium--chromium layers to the anionic boron layers. In particular, we focus on elucidating the bonding mechanism within the structurally embedded Cr-Cr dimers. Specifically, we evaluate a previously proposed interpretation that the localized Cr states are molecular-like bonding and antibonding states. The calculated dependence of the electronic structure on the intra-dimer distance correlates with the level-splitting characteristics known for classical homonuclear diatomic molecules.

9 pages, 5 figures

Interplay between crystal structure and magnetism in CeCrB$_4$ · wovepaper