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Title
Theory of slidetronics in ferroelectric van der Waals layers
Issued Date
2025-12
Citation
Physical Review Materials, v.9, no.12
Type
Article
ISSN
2475-9953
Abstract

Ferroelectricity can emerge in vertically stacked two-dimensional materials even when their constituent monolayers are nonferroelectric. In these sliding ferroelectrics, polarization switching is driven by small lateral displacements between layers. Here, we develop a comprehensive materials design framework for slidetronics founded on a symmetry principle: any sliding-induced polarization change from a state P to P' can be equivalently described by applying an appropriate point-group operator, or "generator" G, to the entire system, such that P' = GP. This generator-based framework classifies all possible sliding-induced transformations, establishes the necessary symmetry conditions for switchable polarization components, and provides design strategies for realizing targeted switching behaviors. A central result is that complete polarization inversion is symmetry forbidden in bilayers but becomes possible in multilayers. First-principles calculations confirm these predictions, revealing novel phenomena including dipole-locked ferroelectricity in cellulose bilayers, in-plane switching in As2S3-based systems, and full polarization reversal in a PdSe2 trilayer.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/60021
DOI
10.1103/m3cv-63sk
Publisher
AMER PHYSICAL SOC
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강준구
Kang, Joongoo강준구

Department of Physics and Chemistry

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