Field-induced transformation of ellipsoidal cycloidal to conical spin order and possible magnetoelectric effect in a triangular antiferromagnet MnGeTeO<sub>6</sub>
POSTER
Abstract
The non-centrosymmetric layered honeycomb tellurate compound MnGeTeO6 possesses a spin-frustrated triangular magnetic lattice, rendering it a compelling candidate for new multiferroic material. A high-quality MnTeGeO6 polycrystalline sample was synthesized via solid-state synthesis. Magnetic and specific heat measurements confirmed an antiferromagnetic long-range ordered temperature (TN) at 9.4 K, accompanying a metamagnetic phase transition observed in isothermal magnetization M (H) curves below TN. Interestingly, a significant frequency-independent dielectric anomaly was observed near TN in the temperature-dependent dielectric curves ε' (T). The scaling of magnetodielectric (MD) coupling with magnetization corresponds to the possible existence of higher-order magnetoelectric coupling. In this regard, the possible oblique conical type of spiral spin texture probably induces the observation of the higher-order magnetoelectric coupling, which underscores its substantial potential as a new magnetoelectric material.
*This study was supported by the National Science and Technology Council, Taiwan, under Grants No. MOST 110-2112-M-110-008-MY3, NSTC 111-2112-M-110-019, NSTC 111-2811-M-110-010, NSTC 112-2811-M-110-029, NSTC 112-2923-M-110-001, and NSTC 112-2112-M-110-018
Publication: 1. K.-l. Ji, E. Solana-Madruga, A. M. Arevalo-Lopez, P. Manuel, C. Ritter, A. Senyshyn, and J. P. Attfield, Chemical Communications 54, 12523 (2018).
2. T. Kimura, J. C. Lashley, and A. P. Ramirez, Physical Review B 73, 220401 (2006).
3. Y. S. Tang, J. H. Zhang, L. Lin, R. Chen, J. F. Wang, S. H. Zheng, C. Li, Y. Y. Zhang, G. Z. Zhou, L. Huang, Z. B. Yan, X. M. Lu, D. Wu, X. K. Huang, X. P. Jiang, and J.-M. Liu, Physical Review B 103, 014112 (2021).
Presenters
-
Yu-Hao Chang
- National Sun Yat-sen University