4.6 Article

Microscopic origin of multiferroic order in monolayer NiI2

期刊

2D MATERIALS
卷 9, 期 2, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/2053-1583/ac4e9d

关键词

monolayer multiferroic; helimagnet; spin-orbit coupling; van der Waals materials; magnetoelectric coupling

资金

  1. Academy of Finland [331342, 336243]
  2. Jane and Aatos Erkko Foundation
  3. Academy of Finland (AKA) [331342, 331342, 336243] Funding Source: Academy of Finland (AKA)

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The multiferroic behavior in monolayer NiI2, exhibiting helimagnetic order and ferroelectric order simultaneously, has been discovered. The origin of the two-dimensional multiferroicity in NiI2 has been revealed using first-principles electronic structure methods, showing that the helimagnetic state is a consequence of long-range magnetic exchange interactions and the ferroelectric order arises from the interplay of non-collinear magnetism and spin-orbit coupling.
The discovery of multiferroic behavior in monolayer NiI2 provides a new symmetry-broken state in van der Waals monolayers, featuring the simultaneous emergence of helimagnetic order and ferroelectric order at a critical temperature of T = 21 K. However, the microscopic origin of multiferroic order in NiI2 monolayer has not been established, and in particular, the role of non-collinear magnetism and spin-orbit coupling in this compound remains an open problem. Here we reveal the origin of the two-dimensional multiferroicity in NiI2 using first-principles electronic structure methods. We show that the helimagnetic state appears as a consequence of the long-range magnetic exchange interactions, featuring sizable magnetic moments in the iodine atoms. We demonstrate that the electronic density reconstruction accounting for the ferroelectric order emerges from the interplay of non-collinear magnetism and spin-orbit coupling. We demonstrate that the ferroelectric order is controlled by the iodine spin-orbit coupling, and leads to an associated electronically-driven distortion in the lattice. Our results establish the microscopic origin of the multiferroic behavior in monolayer NiI2, putting forward the coexistence of helical magnetic order and ligand spin-orbit coupling as driving forces for multiferroic behavior in two-dimensional materials.

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