Magnetic structures and quadratic magnetoelectric effect in LiNiPO4 beyond 30 T

Neutron diffraction with static and pulsed magnetic fields is used to directly probe the magnetic structures in LiNiPO4 up to 25 T and 42 T, respectively. By combining these results with magnetometry and electric polarization measurements under pulsed fields, the magnetic and magnetoelectric phases...

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Veröffentlicht in:Physical review. B 2020-01, Vol.101 (2), p.1, Article 024403
Hauptverfasser: Fogh, Ellen, Kihara, Takumi, Toft-Petersen, Rasmus, Bartkowiak, Maciej, Narumi, Yasuo, Prokhnenko, Oleksandr, Miyake, Atsushi, Tokunaga, Masashi, Oikawa, Kenichi, Sorensen, Michael Korning, Dyrnum, Julia Cathrine, Grimmer, Hans, Nojiri, Hiroyuki, Christensen, Niels Bech
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Sprache:eng
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Zusammenfassung:Neutron diffraction with static and pulsed magnetic fields is used to directly probe the magnetic structures in LiNiPO4 up to 25 T and 42 T, respectively. By combining these results with magnetometry and electric polarization measurements under pulsed fields, the magnetic and magnetoelectric phases are investigated up to 56 T applied along the easy c axis. In addition to the already known transitions at lower fields, three new ones are reported at 37.6, 39.4, and 54 T. Ordering vectors are identified with Q(VI) = (0, 1/3, 0) in the interval 37.6 - 39.4 T and Q(VII) = (0, 0, 0) in the interval 39.4 - 54 T. A quadratic magnetoelectric effect is discovered in the Q(VII) = (0, 0, 0) phase and the field dependence of the induced electric polarization is described using a simple mean-field model. The observed magnetic structure and magnetoelectric tensor elements point to a change in the lattice symmetry in this phase. We speculate on the possible physical mechanism responsible for the magnetoelectric effect in LiNiPO4.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.101.024403