arXiv · 2306.11720
Signatures of pressure-enhanced helimagnetic order in van der Waals multiferroic NiI$_2$
Abstract
The van der Waals (vdW) type-II multiferroic NiI$_2$ has emerged as a candidate for exploring non-collinear magnetism and magnetoelectric effects in the 2D limit. Frustrated intralayer exchange interactions on a triangular lattice result in a helimagnetic ground state, with spin-induced improper ferroelectricity stabilized by the interlayer interactions. Here we investigate the magnetic and structural phase transitions in bulk NiI$_2$, using high-pressure Raman spectroscopy, optical linear dichroism, and x-ray diffraction. We obtain evidence for a significant pressure enhancement of the antiferromagnetic and helimagnetic transition temperatures, at rates of $\sim15.3/14.4$ K/GPa, respectively. These enhancements are attributed to a cooperative effect of pressure-enhanced interlayer and third-nearest-neighbor intralayer exchange. These results reveal a general path for obtaining high-temperature type-II multiferroicity via high pressures in vdW materials.
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Connor A. Occhialini, Luiz G. P. Martins, Qian Song, Jesse S. Smith, Jesse Kapeghian, Danila Amoroso, Joshua J. Sanchez, Paolo Barone, Bertrand Dupé, Matthieu j. Verstraete, Jing Kong, Antia S. Botana, Riccardo Comin. 2023-06-20. Signatures of pressure-enhanced helimagnetic order in van der Waals multiferroic NiI$_2$. https://arxiv.org/abs/2306.11720
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