Record-large magnetically driven polarization in room temperature ferromagnets Os$X_2$ monolayers

Fuente: arXiv
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Autores principales: Zhou, Ying, Ye, Haoshen, Zhang, Junting, Dong, Shuai
Formato: Preprint
Publicado: 2024
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author Zhou, Ying
Ye, Haoshen
Zhang, Junting
Dong, Shuai
author_facet Zhou, Ying
Ye, Haoshen
Zhang, Junting
Dong, Shuai
contents Magnetically induced ferroelectrics in multiferroics provide an optimal approach to pursuit intrinsically strong magnetoelectricity. However, the complex antiferromagnetism, faint magnetically induced polarization, and low working temperatures make their magnetoelectric performance incompetent from the applications demands. Here, a family of two-dimensional $5d$ halides Os$X_2$ monolayers is predicted to be ferroelectric and ferromagnetic above room temperature. More interestingly, benefiting from the strong spin-orbital coupling and high-spin state of Os$^{2+}$ ion, the magnetically induced ferroelectric polarization can reach $5.9$ $μ$C/cm$^2$, a record-large value in type-II multiferroics. The magnetoelectric effect, that is, controlling ferroelectric polarization by magnetic field has been demonstrated, and magnetically driven ferrovalley also emerges in this system. This work provides an effective way to solve the main defects of type-II multiferroics.
format Preprint
id arxiv_https___arxiv_org_abs_2409_18366
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Record-large magnetically driven polarization in room temperature ferromagnets Os$X_2$ monolayers
Zhou, Ying
Ye, Haoshen
Zhang, Junting
Dong, Shuai
Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
Magnetically induced ferroelectrics in multiferroics provide an optimal approach to pursuit intrinsically strong magnetoelectricity. However, the complex antiferromagnetism, faint magnetically induced polarization, and low working temperatures make their magnetoelectric performance incompetent from the applications demands. Here, a family of two-dimensional $5d$ halides Os$X_2$ monolayers is predicted to be ferroelectric and ferromagnetic above room temperature. More interestingly, benefiting from the strong spin-orbital coupling and high-spin state of Os$^{2+}$ ion, the magnetically induced ferroelectric polarization can reach $5.9$ $μ$C/cm$^2$, a record-large value in type-II multiferroics. The magnetoelectric effect, that is, controlling ferroelectric polarization by magnetic field has been demonstrated, and magnetically driven ferrovalley also emerges in this system. This work provides an effective way to solve the main defects of type-II multiferroics.
title Record-large magnetically driven polarization in room temperature ferromagnets Os$X_2$ monolayers
topic Materials Science
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2409.18366