科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Materials & Design2026-03-15· Materials science

Effect of uniaxial compressive stress on polarization switching and domain wall formation in tetragonal phase BaTiO3 via machine learning potential

Poyen Chen, Teruyasu Mizoguchi

原始摘要(英文原文)· Original abstract
Ferroelectric materials such as BaTiO 3 exhibit spontaneous polarization that can be reoriented by an external electric field, forming the basis of a wide range of memory, actuator, and sensor applications. However, the polarization switching behavior is strongly influenced by mechanical boundary conditions due to the intrinsic electromechanical coupling in ferroelectrics. In this study, we employ a machine learning interatomic potential to investigate the effect of uniaxial compressive stress on polarization switching and domain wall evolution in the tetragonal phase of BaTiO 3 . This study revealed that a critical stress of approximately 120 MPa, above which 90° polarization switching occurs. Beyond the critical stress, larger supercells exhibit lower activation energies for polarization switching, accompanied by the 180° domain wall formation and reduced constraints from periodic boundary conditions, thereby facilitating domain-wall formation. Moreover, increasing compressive stress leads to a reduction in both the remnant polarization and the coercive field, while a double hysteresis loop emerges at a stress level of 80 MPa. These findings provide atomistic insights into stress-controlled ferroelectric switching and highlight the crucial role of mechanical loading in designing reliable ferroelectric devices.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Effect of uniaxial compressive stress on polarization switching and domain wall formation in tetragonal phase BaTiO3 via machine learning potential — 科研速览 Science Skim