Large anomalous Hall effect in the kagome ferromagnet LiMnSn
arXiv:2106.10995 · doi:10.1103/PhysRevB.103.144410
Abstract
Kagome magnets are believed to have numerous exotic physical properties due to the possible interplay between lattice geometry, electron correlation and band topology. Here, we report the large anomalous Hall effect in the kagome ferromagnet LiMnSn, which has a Curie temperature of 382 K and easy plane along with the kagome lattice. At low temperatures, unsaturated positive magnetoresistance and opposite signs of ordinary Hall coefficient for and indicate the coexistence of electrons and holes in the system. A large intrinsic anomalous Hall conductivity of 380 cm, or 0.44 per Mn layer, is observed in . This value is significantly larger than those in other MnSn ( = rare earth elements) kagome compounds. Band structure calculations show several band crossings, including a spin-polarized Dirac point at the K point, close to the Fermi energy. The calculated intrinsic Hall conductivity agrees well with the experimental value, and shows a maximum peak near the Fermi energy. We attribute the large anomalous Hall effect in LiMnSn to the band crossings closely located near the Fermi energy.
References in corpus (5)
Cited by in corpus (7)
- Anomalous Hall effect in ferrimagnetic metal RMn6Sn6 (R = Tb, Dy, Ho) with clean Mn kagome lattice
- Anisotropically large anomalous and topological Hall effect in a kagome magnet
- Flat band separation and robust spin-Berry curvature in bilayer kagome metals
- Quantum Interactions in Topological R166 Kagome Magnet
- Robust Kagome Electronic Structure in Topological Quantum Magnets XMn6Sn6 (X = Dy, Tb, Gd, Y)
- Band splitting induced Berry flux and intrinsic anomalous Hall conductivity in NiCoMnGa quaternary Heusler compound
- Large magnetocaloric effect in the kagome ferromagnet LiCr(PO)(PO)