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  3. Distribution of antiferromagnetic rare-earth domains in multiferroic Dy0.7Tb0.3FeO3.

Distribution of antiferromagnetic rare-earth domains in multiferroic Dy0.7Tb0.3FeO3.

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DOI
10.48620/93690
Publisher DOI
10.1038/s42005-025-02401-w
PubMed ID
41426012
Abstract
In many multiferroics, rare-earth and transition-metal orders coexist. For analyzing their interaction and its consequences for the multiferroic state, the domain patterns and their spatial correlation give valuable insight. Unfortunately, this is often hampered by the lack of access to the domains of the rare-earth order. Here, we uncover such a domain pattern for the multiferroic Dy0.7Tb0.3FeO3. Optical second harmonic generation reveals columnar Dy/Tb domains. The columns arrange perpendicular to the magnetically induced electric polarization. Hence, the antiferromagnetic rare-earth order forces the ferroelectric domains to form nominally charged domain walls. In turn, to reduce energy, the ferroelectric order causes a diminished rare-earth domain-wall density along the polarization direction. This interplay highlights the multiferroic character of the Dy0.7Tb0.3FeO3 domain pattern and the important role of the rare-earth order. We position Dy0.7Tb0.3FeO3 within the broader landscape of rare-earth multiferroics identifying three distinct scenarios for the role of rare-earth order.
Date Issued
2025
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
Ferroelectrics and multiferroics
•
Magnetic properties and materials
Language(s)
en
Author(s)
Zemp, Yannik
Hassanpour, Ehsan  
University Clinic for Diabetes, Endocrinology, Clinical Nutrition and Metabolism (UDEM)  
Horstmann, Jan Gerrit
Tokunaga, Yusuke
Taguchi, Yasujiro
Tokura, Yoshinori
Lottermoser, Thomas
Weber, Mads C
Fiebig, Manfred
Additional Credits
University Clinic for Diabetes, Endocrinology, Clinical Nutrition and Metabolism (UDEM)  
Journal
Communications Physics
Publisher
Nature Research
ISSN
2399-3650
Access(Rights)
open.access
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