电致伸缩
凝聚态物理
铁电性
材料科学
四方晶系
电介质
晶格常数
正交晶系
极化(电化学)
弹性模量
介电常数
体积模量
相(物质)
光学
压电
物理
衍射
化学
复合材料
量子力学
光电子学
物理化学
作者
J. J. Wang,Fanyan Meng,Xingqiao Ma,Ming Xu,Long‐Qing Chen
摘要
Predicting the domain structures and properties in both bulk single crystal and thin film ferroelectrics using the phase-field approach requires the knowledge of fundamental mechanical, electrical, and electromechanical coupling properties of a single-domain state. In this work, the elastic properties and structural parameters of cubic single crystals as well as tetragonal, orthorhombic, and rhombohedral BaTiO3 single domain states are obtained using first-principles calculations under the local density approximation. The calculated lattice constants, bulk modulus, and elastic constants are in good agreement with experiments for both the cubic paraelectric phase and the low-temperature ferroelectric phases. Spontaneous polarizations for all three ferroelectric phases and the electrostrictive coefficients of cubic BaTiO3 are also computed using the Berry’s phase approach, and the results agree well with existing experimentally measured values.
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