Magnetic and ferroelectric phase diagram of twisted CrI layers
arXiv:2507.12324 · doi:10.1103/bwwv-f247
Abstract
Twisting layers provide a rich ore for exotic physics in low dimensions. Despite the abundant discoveries of twistronics from the aspect of electronic structures, ferroic moiré textures are more plain and thus less concerned. Rigid lattice models are straightforward which can give a rough but intuitional description in most cases. However, taking CrI as a model system, here we will demonstrate that the interlayer stacking potential can spontaneously lead to structural relaxation, which plays a vital role to understand the ferroicity in the twisted superlattices. The magnetic ground state is sensitive to the stacking mode and twisting angles, which can be seriously affected by the structural relaxation. In particular, the expected magnetic bubbles are annihilated in its bilayer. In contrast, due to topological protection, the ferroelectric vortices are more robust to structural relaxation, as well as twisting angle and thickness.Due to the universal existence of spontaneous structural relaxation in twisted superlattices, our work may lead to a general revisitation of emerging physics of twistronics.
9 pages, 9 figures
References in corpus (18)
- Stacking-engineered ferroelectricity in bilayer boron nitride
- Observation of topological polaritons and photonic magic angles in twisted van der Waals bi-layers
- Atomic reconstruction in twisted bilayers of transition metal dichalcogenides
- Evidence for a single-layer van der Waals multiferroic
- Berry curvature memory through electrically driven stacking transitions
- Deep moiré potentials in twisted transition metal dichalcogenide bilayers
- General Theory for Bilayer Stacking Ferroelectricity
- A 2D ferroelectric vortex lattice in twisted BaTiO3 freestanding layers
- Atypical sliding and Moire ferroelectricity in pure multilayer graphene
- Moiré skyrmions and chiral magnetic phases in twisted CrX (X I, Br, Cl) bilayers
- Lattice reconstruction induced multiple ultra-flat bands in twisted bilayer WSe2
- Polar meron-antimeron networks in strained and twisted bilayers
- Electrically tunable moiré magnetism in twisted double bilayers of chromium triiodide
- Moire Potential, Lattice Relaxation and Layer Polarization in Marginally Twisted MoS2 Bilayers
- Magneto-optical Kerr effect in ferroelectric antiferromagnetic two-dimensional heterostructures
- Observation of stacking engineered magnetic phase transitions within moiré supercells of twisted van der Waals magnets
- Macroscopic Tunneling Probe of Moiré Spin Textures in Twisted CrI
- Emergence of stable meron quartets in twisted magnets