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Ferromagnetic kinetic exchange interaction in magnetic insulators

Published 31 Dec 2019 in cond-mat.str-el, cond-mat.mtrl-sci, and physics.chem-ph | (1912.13274v3)

Abstract: The superexchange theory predicts dominant antiferromagnetic kinetic interaction when the orbitals accommodating magnetic electrons are covalently bonded through diamagnetic bridging atoms/groups. Here we show that explicit consideration of magnetic and (leading) bridging orbitals, together with the electron transfer between the former, reveals a strong ferromagnetic kinetic exchange contribution. First principle calculations show that it is comparable in strength with antiferromagnetic superexchange in a number of magnetic materials with diamagnetic metal bridges. In particular, it is responsible for a very large ferromagnetic coupling ($-10$ meV) between the iron ions in a Fe${3+}$-Co${3+}$-Fe${3+}$ complex.

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