THz spin-wave excitations in the transverse conical phase of BiFeO$_3$

Fuente: arXiv
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Auteurs principaux: Tóth, B., Farkas, D. G., Amelin, K., Rõõm, T., Nagel, U., Udvardi, L., Szunyogh, L., Rózsa, L., Ito, T., Bordács, S.
Format: Preprint
Publié: 2024
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author Tóth, B.
Farkas, D. G.
Amelin, K.
Rõõm, T.
Nagel, U.
Udvardi, L.
Szunyogh, L.
Rózsa, L.
Ito, T.
Bordács, S.
author_facet Tóth, B.
Farkas, D. G.
Amelin, K.
Rõõm, T.
Nagel, U.
Udvardi, L.
Szunyogh, L.
Rózsa, L.
Ito, T.
Bordács, S.
contents Although BiFeO$_3$ is one of the most studied multiferroic materials, recent magnetization and neutron scattering studies have revealed a new magnetic phase in this compound - the transverse conical phase. To study the collective spin excitations of this phase, we performed THz spectroscopy in magnetic fields up to 17 T at and above room temperature. We observed five spin-wave branches in the magnetic phase with long wavelength conical modulation. Using a numerical spin dynamics model we found two kinds of excitations with magnetic moments oscillating either along or perpendicular to the static fields. Remarkably, we detected strong directional dichroism, an optical manifestation of the magnetoelectric effect, for two spin-wave modes of the conical phase. According to our experiments, the stability of the conical state is sensitive to the magnetic field history and it can become (meta)stable at or close to zero magnetic field, which may allow exploiting its magnetoelectric properties at room temperature.
format Preprint
id arxiv_https___arxiv_org_abs_2402_01417
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle THz spin-wave excitations in the transverse conical phase of BiFeO$_3$
Tóth, B.
Farkas, D. G.
Amelin, K.
Rõõm, T.
Nagel, U.
Udvardi, L.
Szunyogh, L.
Rózsa, L.
Ito, T.
Bordács, S.
Materials Science
Although BiFeO$_3$ is one of the most studied multiferroic materials, recent magnetization and neutron scattering studies have revealed a new magnetic phase in this compound - the transverse conical phase. To study the collective spin excitations of this phase, we performed THz spectroscopy in magnetic fields up to 17 T at and above room temperature. We observed five spin-wave branches in the magnetic phase with long wavelength conical modulation. Using a numerical spin dynamics model we found two kinds of excitations with magnetic moments oscillating either along or perpendicular to the static fields. Remarkably, we detected strong directional dichroism, an optical manifestation of the magnetoelectric effect, for two spin-wave modes of the conical phase. According to our experiments, the stability of the conical state is sensitive to the magnetic field history and it can become (meta)stable at or close to zero magnetic field, which may allow exploiting its magnetoelectric properties at room temperature.
title THz spin-wave excitations in the transverse conical phase of BiFeO$_3$
topic Materials Science
url https://arxiv.org/abs/2402.01417