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- W3088242792 abstract "We investigated the ground state of monolayer 1T-XCl$_{2}$ (X: Fe, Co, and Ni) using the generalized Bloch theorem, which can generate ferromagnetic, spiral, and antiferromagnetic states. Each state was represented by a unique spiral vector that arranges the magnetic moment of magnetic atom in the primitive unit cell. We found the ferromagnetic ground state for the FeCl$_{2}$ and NiCl$_{2}$ while the spiral ground state appears for the CoCl$_{2}$. We also showed that the ground state depends sensitively on the lattice constant. When the hole-electron doping was taken into account, we found the phase transition, which involves the ferromagnetic, spiral, and antiferromagnetic states, for all the systems. Since the spin-spin interaction in the monolayer metal dichlorides is influenced by the competition between the direct exchange and the superexchange, we justify that the carrier concentration determines which interaction should dominate." @default.
- W3088242792 created "2020-10-01" @default.
- W3088242792 creator A5084092758 @default.
- W3088242792 date "2021-01-01" @default.
- W3088242792 modified "2023-10-17" @default.
- W3088242792 title "Carrier-induced phase transition in metal dichlorides XCl2 (X: Fe, Co, and Ni)" @default.
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- W3088242792 doi "https://doi.org/10.1016/j.jmmm.2020.167386" @default.
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