Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session Y37: Bulk Complex Oxides: Experiments
11:30 AM–2:30 PM,
Friday, March 19, 2021
Sponsoring
Units:
GMAG DMP DCOMP
Chair: Rebecca Dally, National Institute of Standards and Technology
Abstract: Y37.00015 : Noncollinear antiferromagnetic order in the buckled honeycomb lattice of magnetoelectric Co4Ta2O9 determined by single-crystal neutron diffraction
2:18 PM–2:30 PM
Live
Presenter:
Sungkyun Choi
(Rutgers University, New Brunswick)
Authors:
Sungkyun Choi
(Rutgers University, New Brunswick)
Donggun Oh
(Yonsei University)
Matthias Gutmann
(Rutherford Appleton Laboratory)
Shangke Pan
(Ningbo University)
Gideok Kim
(Max Planck Institute for Solid State Research)
Kwanghyo Son
(Max Planck Institute for Intelligent Systems)
Jae Wook Kim
(Rutgers University, New Brunswick)
Nara Lee
(Yonsei University)
Sang-Wook Cheong
(Rutgers University, New Brunswick)
Youngjai Choi
(Yonsei University)
Valery D Kiryukhin
(Rutgers University, New Brunswick)
Here, we report systematic neutron diffraction measurements and direction-dependent magnetic susceptibility measurements on Co4Ta2O9 single crystals [1]. Below 20.3 K, we find a long-range antiferromagnetic order in the alternating buckled and flat honeycomb layers of Co2+ ions stacked along the c-axis. Within experimental accuracy, we propose the magnetic moments lying in the ab-plane as a minimal model. They form a tilted antiferromagnetic structure with a tilt angle of about 14 degrees at 15 K in each buckled layer and collinear moments in each flat layer, directly evidenced by a finite (0, 0, 3) magnetic Bragg peak. The obtained magnetic space group is C2'/c, different from C2/c' previously reported by powder neutron diffraction and in the isostructural Co4Nb2O9. Our revised magnetic structure successfully explains the main features of the magnetoelectric tensor of Co4Ta2O9 within the framework of the spin-flop model.
[1] Sungkyun Choi et al., https://arxiv.org/abs/2007.06561 (2020).
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