A three-order-parameter bistable magnetoelectric multiferroic metal

Ricci F.
Secondo
;
Filippetti A.;Fiorentini V.
Ultimo
2020-01-01

Abstract

Using first-principles calculations we predict that the layered-perovskite metal Bi5Mn5O17 is a ferromagnet, ferroelectric, and ferrotoroid which may realize the long sought-after goal of a room-temperature ferromagnetic single-phase multiferroic with large, strongly coupled, primary-order polarization and magnetization. Bi5Mn5O17 has two nearly energy-degenerate ground states with mutually orthogonal vector order parameters (polarization, magnetization, ferrotoroidicity), which can be rotated globally by switching between ground states. Giant cross-coupling magnetoelectric and magnetotoroidic effects, as well as optical non-reciprocity, are thus expected. Importantly, Bi5Mn5O17 should be thermodynamically stable in O-rich growth conditions, and hence experimentally accessible.
2020
2020
Inglese
11
1
4922
7
https://www.nature.com/articles/s41467-020-18664-6
Esperti anonimi
internazionale
scientifica
ferroelectrics; metals; ferromagnets; ferrotoroids
Urru, A.; Ricci, F.; Filippetti, A.; Iniguez, J.; Fiorentini, V.
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
5
open
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