Soft antiphase tilt of oxygen octahedra in the hybrid improper multiferroic Ca3Mn1.9Ti0.1O7

We report a single crystal neutron and x-ray diffraction study of the hybrid improper multiferroic Ca3Mn1.9Ti0.1O7 (CMTO), a prototypical system where the electric polarization arises from the condensation of two lattice distortion modes. With increasing temperature (T), the out-of-plane, antiphase...

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Veröffentlicht in:Physical review. B 2018-01, Vol.97 (4)
Hauptverfasser: Ye, Feng, Wang, Jinchen, Sheng, Jieming, Hoffmann, C, Gu, T, Xiang, H J, Tian, Wei, Molaison, J Molaison, dos Santos, A M, Matsuda, M, Chakoumakos, B C, Fernandez-Baca, J A, Tong, X, Gao, Bin, Kim, Jae Wook, Cheong, S-W
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Sprache:eng
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Zusammenfassung:We report a single crystal neutron and x-ray diffraction study of the hybrid improper multiferroic Ca3Mn1.9Ti0.1O7 (CMTO), a prototypical system where the electric polarization arises from the condensation of two lattice distortion modes. With increasing temperature (T), the out-of-plane, antiphase tilt of MnO6 decreases in amplitude while the in-plane, in-phase rotation remains robust and experiences abrupt changes across the first-order structural transition. Application of hydrostatic pressure (P) to CMTO at room temperature shows a similar effect. The consistent behavior under both T and P reveals the softness of antiphase tilt and highlights the role of the partially occupied d orbital of the transition-metal ions in determining the stability of the octahedral distortion. Polarized neutron analysis indicates the symmetry-allowed canted ferromagnetic moment is less than the 0.04μB/Mn site, despite a substantial out-of-plane tilt of the MnO6 octahedra.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.97.041112