paper

Polarization switching in sliding ferroelectrics: the roles of fluctuation and domain wall

arXiv:2505.09084 · doi:10.1103/PhysRevB.111.L201406

Abstract

Sliding ferroelectricity is highly attractive for its low energy barriers and fatigue resistance. As the origin of these exotic properties, its unconventional switching dynamics remains poorly understood: how an electric field drives a perpendicular sliding? Taking -BN bilayer as a model system, its switching dynamics is studied using \textit{ab initio} calculations. The off-diagonal Born effective charge leads to the perpendicular relationship between the electric field and ionic movements. Interestingly, the rules of intrinsic coercive field are distinct between -BN bilayer and conventional ferroelectrics. For -BN bilayer, any perturbation breaking the in-plane symmetry plays a key role to assist the avalanche-like switching dynamics. Moreover, the exotic large off-diagonal Born effective charge near the intermediate state results in a wriggling motion of domain walls in -BN bilayer. Our results reveal the key factors in the ferroelectric switching of sliding ferroelectrics at room temperature.

6 pages, 4 figures

References in corpus (5)