DOE OSTI · 1846987
Evidence for a single-layer van der Waals multiferroic
Abstract
Here we searched for signatures of type-II multiferroic order in ultrathin van der Waals materials, to determine if such a state, comprising coexisting electrical polarization and spin order with strong magnetoelectric effects, could persist down to a single-atomic layer. We reported the first observation of such a state in triangular lattice material NiI 2 . This system has a layered structure and built-in magnetic frustration that promotes a complex magnetic ground state with proper-screw spin helices. The spin helix pattern breaks inversion symmetry and induces electrical polarization via magnetoelectric coupling. We use circular dichroic Raman measurements to directly probe the magneto-chiral ground state and its electromagnon modes originating from dynamic magnetoelectric coupling. Using birefringence and second-harmonic generation measurements, we detect a highly anisotropic electronic state simultaneously breaking three-fold rotational and inversion symmetry. The evolution of the optical signatures as a function of temperature and layer number surprisingly revealed a multiferroic state that persists down to the ultrathin limit of monolayer NiI 2 . These observations establish NiI 2 and transition metal dihalides as a new platform for studying emergent multiferroic phenomena, chiral magnetic textures and ferroelectricity in the 2D limit.
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Song, Qian, Occhialini, Connor A., Ergeçen, Emre, Ilyas, Batyr, Amoroso, Danila, Barone, Paolo, Kapeghian, Jesse, Watanabe, Kenji, Taniguchi, Takashi, Botana, Antia S., Picozzi, Silvia, Gedik, Nuh, Comin, Riccardo. 2022-02-23. Evidence for a single-layer van der Waals multiferroic. https://doi.org/10.1038/s41586-021-04337-x
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