Altermagnetism in the layered intercalated transition metal dichalcogenide CoNb<sub>4</sub>Se<sub>8</sub>.

Regmi, Resham Babu; Bhandari, Hari; Thapa, Bishal; Hao, Yiqing; Sharma, Nileema; McKenzie, James; Chen, Xinglong; Nayak, Abhijeet et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Altermagnets (AMs) are a new class of magnetic materials that combine the beneficial spintronics properties of ferromagnets and antiferromagnets, garnering significant attention recently. Here, we have identified altermagnetism in a layered intercalated transition metal diselenide, CoNb<sub>4</sub>Se<sub>8</sub>, which crystallizes with an ordered sublattice of intercalated Co atoms between NbSe<sub>2</sub> layers. Single crystals are synthesized, and the structural characterizations are performed using single crystal diffraction and scanning tunneling microscopy. Magnetic measurements reveal easy-axis antiferromagnetism below 168 K. Density functional theory (DFT) calculations indicate that A-type antiferromagnetic ordering with easy-axis spin direction is the ground state, which is verified through single crystal neutron diffraction experiments. Electronic band structure calculations in this magnetic state display spin-split bands, confirming altermagnetism in this compound. The layered structure of CoNb<sub>4</sub>Se<sub>8</sub> presents a promising platform for testing various predicted properties associated with altermagnetism.