铁电性
单层
反铁电性
凝聚态物理
亚稳态
偶极子
材料科学
钙钛矿(结构)
联轴节(管道)
极地的
纳米尺度
化学物理
现象学模型
热涨落
热稳定性
热的
铁电聚合物
工作(物理)
退化(生物学)
磁滞
相变
铁磁性
纳米技术
物理
理论(学习稳定性)
作者
X. Y. Zhou,X. Luo,Li-Bin Wan,Jin-Zhu Zhao
摘要
In this work, we uncover the physical origin of room-temperature stable and small-sized ferroelectric domains in monolayer CuInP2S6. Our phenomenological model, accurately fitted by first-principles datasets, elucidates the physical origins of previously reported order–disorder transitions and scale-free behavior in the studied system. Unlike conventional perovskite ferroelectrics, the ferroelectricity in monolayer CuInP2S6 stems from spontaneous intra-cell polar distortions with negligible inter-dipole coupling. While antiferroelectric ordering emerges as the ground state, its thermal stability competes with scale-free and distorted ferroelectric configurations. We quantitatively clarify this mechanism through our modeling, demonstrating how the degeneracy of metastable states enables coexisting order parameters across multiple length scales. This work fundamentally distinguishes weak-correlation ferroelectricity from conventional cooperative mechanisms, offering promising design principles for nanoscale ferroelectric devices, with particular promise for high-density memory applications.
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