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Magnetoelectric Coupling through the Spin Flop Transition in Ni3TeO6

Title: Magnetoelectric Coupling Through The Spin Flop Transition In Ni3teo6.
Name(s): Yokosuk, M. O., author
al-Wahish, Amal, author
Artyukhin, Sergey, author
O'Neal, K. R., author
Mazumdar, D., author
Chen, P., author
Yang, Junjie, author
Oh, Yoon Seok, author
McGill, Stephen A., author
Haule, K., author
Cheong, Sang-Wook, author
Vanderbilt, David, author
Musfeldt, J. L., author
Type of Resource: text
Genre: Text
Date Issued: 2016-09-30
Physical Form: computer
online resource
Extent: 1 online resource
Language(s): English
Abstract/Description: We combined high field optical spectroscopy and first principles calculations to analyze the electronic structure of Ni3TeO6 across the 53 K and 9 T magnetic transitions, both of which are accompanied by large changes in electric polarization. The color properties are sensitive to magnetic order due to field-induced changes in the crystal field environment, with those around Ni1 and Ni2 most affected. These findings advance the understanding of magnetoelectric coupling in materials in which magnetic 3d centers coexist with nonmagnetic heavy chalcogenide cations.
Identifier: FSU_libsubv1_wos_000385971800013 (IID), 10.1103/PhysRevLett.117.147402 (DOI)
Publication Note: The publisher’s version of record is available at
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Host Institution: FSU
Is Part Of: Physical Review Letters.
Issue: iss. 14, vol. 117

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Yokosuk, M. O., Al-Wahish, A., Artyukhin, S., O'Neal, K. R., Mazumdar, D., Chen, P., … Musfeldt, J. L. (2016). Magnetoelectric Coupling Through The Spin Flop Transition In Ni3teo6. Physical Review Letters. Retrieved from