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오윤석

Oh, Yoon Seok
Laboratory for Strong Correlation in Quantum Materials
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Control of magnetoelectric coupling in the Co2Y-type hexaferrites

Author(s)
Park, Chang BaeSin, Kwang WooChun, Sae HwanLee, Jun HanOh, Yoon SeokDisseler, Steven M.Heikes, Colin A.Ratcliff, William D.Noh, Woo-SukPark, Jae-HoonKim, Kee Hoon
Issued Date
2021-03
DOI
10.1103/PhysRevMaterials.5.034412
URI
https://scholarworks.unist.ac.kr/handle/201301/52532
Fulltext
https://journals.aps.org/prmaterials/abstract/10.1103/PhysRevMaterials.5.034412
Citation
PHYSICAL REVIEW MATERIALS, v.5, no.3, pp.034412
Abstract
We comprehensively investigated the magnetic, ferroelectric, and ME properties of Ba2-xSrxCo2(Fe1-yAly)(12)O-22 single crystals in broad doping ranges of Sr (1.0 <= x <= 1.8) and Al (0.00 <= y <= 0.08). Most of the investigated compounds exhibit an intriguing coexistence of two apparently competing magnetic phases: a transverse conical (TC) and alternating longitudinal conical (ALC) spin structure. The magnetic properties show that the Ba0.2Sr1.8Co2(Fe0.96Al0.04)(12)O-22 crystal has the highest ordering temperature and largest volume fraction of the ALC phase at zero H; further, after the application of an in-plane H, it exhibits a maximized volume fraction of the metastable TC phase, resulting in the highest ME susceptibility and electric polarization at all temperatures below 300 K. Our findings demonstrate that securing the thermal stability of the ALC phase is a crucial prerequisite to achieve optimized ME coupling in Co2Y-type hexaferrites, pointing to a general strategy applicable to other hexaferrites as well.
Publisher
AMER PHYSICAL SOC
ISSN
2475-9953
Keyword
FIELD CONTROLMAGNETIZATIONMULTIFERROICSREVERSAL

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