We put forward the concept of a bulk Rashba effect emerging in a multiferroic material, such as an antiferromagnetic system with a polar crystal structure. According to symmetry considerations, while time-reversal and space-inversion symmetries are both broken, there exist specific spin flipping operations that relate opposite spin sites in the magnetic crystal structure. As a consequence, at certain high-symmetry points in the momentum space, the magnetic point group allows the spin angular momentum to be locked to the linear momentum, a typical feature of the Rashba effect. In such a case, spin-splitting effects induced by spin-orbit coupling can arise, similar to what happens in nonmagnetic Rashba systems. As a prototypical example, ab initio calculations of antiferromagnetic BiCoO3 in the polar structure reveal that a large Rashba-like band and spin splitting occurs at the conduction-band bottom, having a large weight from Bi-p orbital states. Moreover, we show that the spin texture of such a multiferroic can be modulated by applying a magnetic field. In particular, an external in-plane magnetic field is predicted not only to induce spin canting, but also a distortion of the energy isocontours and a shift of the spin vortex (centered on the high-symmetry point and characteristic of Rashba effect) along a direction perpendicular to the applied field.

Yamauchi, K., Barone, P., Picozzi, S. (2019). Bulk Rashba effect in multiferroics: A theoretical prediction for BiCoO3. PHYSICAL REVIEW. B, 100(24), 1-5 [10.1103/PhysRevB.100.245115].

Bulk Rashba effect in multiferroics: A theoretical prediction for BiCoO3

Picozzi S
2019

Abstract

We put forward the concept of a bulk Rashba effect emerging in a multiferroic material, such as an antiferromagnetic system with a polar crystal structure. According to symmetry considerations, while time-reversal and space-inversion symmetries are both broken, there exist specific spin flipping operations that relate opposite spin sites in the magnetic crystal structure. As a consequence, at certain high-symmetry points in the momentum space, the magnetic point group allows the spin angular momentum to be locked to the linear momentum, a typical feature of the Rashba effect. In such a case, spin-splitting effects induced by spin-orbit coupling can arise, similar to what happens in nonmagnetic Rashba systems. As a prototypical example, ab initio calculations of antiferromagnetic BiCoO3 in the polar structure reveal that a large Rashba-like band and spin splitting occurs at the conduction-band bottom, having a large weight from Bi-p orbital states. Moreover, we show that the spin texture of such a multiferroic can be modulated by applying a magnetic field. In particular, an external in-plane magnetic field is predicted not only to induce spin canting, but also a distortion of the energy isocontours and a shift of the spin vortex (centered on the high-symmetry point and characteristic of Rashba effect) along a direction perpendicular to the applied field.
Articolo in rivista - Articolo scientifico
Antiferromagnetism; Bismuth compounds; Calculations; Cobalt compounds; Magnetic fields; Momentum; Textures
English
2019
100
24
1
5
245115
none
Yamauchi, K., Barone, P., Picozzi, S. (2019). Bulk Rashba effect in multiferroics: A theoretical prediction for BiCoO3. PHYSICAL REVIEW. B, 100(24), 1-5 [10.1103/PhysRevB.100.245115].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/545406
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