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◆ Materials2026-04-04· Anisotropy

A Perturbation Model of Gradient Energy Anisotropy for Phase-Field Simulation of Ferroelectrics

Xiaoming Shi, J. Liu, Ke Xu, Haoyu Wang, Zheng Wang, Nan Wang, Houbing Huang, Zhuhong Liu

原始摘要(英文原文)· Original abstract
The efficient and accurate description of gradient energy anisotropy remains a significant challenge in the phase-field modeling of ferroelectric/antiferroelectric (FE/AFE) composite systems. To address this limitation, we have developed a perturbation model for solving anisotropic gradient energy based on Fourier spectral methods. Through a Fourier-space perturbation scheme, we achieve the ability to treat the full anisotropic gradient energy tensor with spatial variations, overcoming limitations of previous constant-coefficient or isotropic approximations. The application of this model to FE/AFE composites demonstrates exceptional robustness and convergence efficiency. Numerical results indicate that the proposed perturbation scheme can accurately reproduce antiferroelectric phase diagrams and AFE-FE phase transition pathways under varying gradient energy parameters. Furthermore, the algorithm exhibits superior scalability, allowing for a seamless extension to three-dimensional (3D) simulation domains. This capability facilitates the visualization of complex nanodomain structures and reveals the intricate 3D evolution mechanisms of polarization textures.
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A Perturbation Model of Gradient Energy Anisotropy for Phase-Field Simulation of Ferroelectrics — 科研速览 Science Skim