Large symmetry and hierarchical ordering transitions in sliding ferroelectrics
arXiv:2503.09883 · doi:10.20935/AcadNano7854
Abstract
Van der Waals "sliding" ferroelectric bilayers, whose electric polarization is locked to the interlayer alignment, show promise for future non-volatile memory and other nanoelectronic devices. These applications require a fuller understanding of the polarization stability and switching properties, which present models have described in terms of an Ising-like binary polarization. However, it is a much larger translation symmetry that is broken in the polar state. Here we introduce a discrete statistical-mechanical model that emphasizes the effect of this larger symmetry. Through Monte-Carlo numerics we show this model possesses a richer phase diagram, including an intermediate critical phase of algebraically-correlated polarization. A low energy effective theory allows us to connect the ferroelectric-paraelectric transition to the Berezinskii-Kosterlitz-Thouless class, driven by excitations not available in Ising-like models. Our results indicate the need for theoretical models of this ferroelectric system to account for the larger symmetry.
6+2 pages, 5 figures
References in corpus (14)
- Interfacial ferroelectricity in rhombohedral-stacked bilayer transition metal dichalcogenides
- Interfacial ferroelectricity in marginally twisted 2D semiconductors
- Sliding induced multiple polarization states in two-dimensional ferroelectrics
- Cumulative Polarization Coexisting with Conductivity at Interfacial Ferroelectrics
- General Theory for Bilayer Stacking Ferroelectricity
- Indirect but Efficient: Laser-Excited Electrons Can Drive Ultrafast Polarization Switching in Ferroelectric Materials
- Visualizing moiré ferroelectricity via plasmons and nano-photocurrent in graphene/twisted-WSe2 structures
- The sliding phase transition in ferroelectric van der Waals bilayers
- A scalable network model for electrically tunable ferroelectric domain structure in twistronic bilayers of two-dimensional semiconductors
- Polarization Saturation in Multi-layered Interfacial Ferroelectrics
- Slippery paraelectric transition metal dichalcogenide bilayers
- Clock model interpolation and symmetry breaking in O(2) models
- Flat and tunable moire phonons in twisted transition-metal dichalcogenides
- Optical detection of the sliding ferroelectric switching in hBN with a WSe2 monolayer