arXiv · 2608.24227
Two Microscopic Mechanisms of Piezomagnetism in CoF$_2$ from First-Principles Calculations
Abstract
Rutile-structured CoF$_2$ has long been recognized as a prototypical piezomagnetic material. Recently, it has attracted renewed interest as an altermagnet, exhibiting spin-split electronic bands even in the absence of spin-orbit coupling. Although the piezomagnetic response of CoF$_2$ has been extensively discussed from the viewpoint of magnetic symmetry, its microscopic origin has remained elusive. First-principles calculations reveal two distinct microscopic mechanisms of piezomagnetism in CoF$_2$. Under $xy$ shear strain, the local volumes of the CoF$_6$ octahedra surrounding the two Co sites become different, leading to unequal magnetic moments on the two sublattices and hence a net magnetization. In contrast, under $yz$ shear strain, the piezomagnetic response originates from spin canting induced by the Dzyaloshinskii--Moriya interaction through spin-orbit coupling. The presence of two distinct microscopic mechanisms may be a general feature of piezomagnetic antiferromagnets.
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Hiroshi Katsumoto, Tamio Oguchi, Kunihiko Yamauchi. 2026-08-25. Two Microscopic Mechanisms of Piezomagnetism in CoF$_2$ from First-Principles Calculations. https://arxiv.org/abs/2608.24227
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