Zubko P, Catalan G, Buckley A, Welche P R L, Scott J F
Centre for Ferroics, Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, United Kingdom.
Phys Rev Lett. 2007 Oct 19;99(16):167601. doi: 10.1103/PhysRevLett.99.167601.
Piezoelectricity is inherent only in noncentrosymmetric materials, but a piezoelectric response can also be obtained in centrosymmetric crystals if subjected to inhomogeneous deformation. This phenomenon, known as flexoelectricity, can significantly affect the functional properties of insulators, particularly thin films of high permittivity materials. We have measured strain-gradient-induced polarization in single crystals of paraelectric SrTiO3 as a function of temperature and orientation down to and below the 105 K phase transition. Estimates were obtained for all the components of the flexoelectric tensor, and calculations based on these indicate that local polarization around defects in SrTiO3 may exceed the largest ferroelectric polarizations. A sign reversal of the flexoelectric response detected below the phase transition suggests that the ferroelastic domain walls of SrTiO3 may be polar.
压电性仅存在于非中心对称材料中,但如果受到非均匀变形,在中心对称晶体中也可获得压电响应。这种现象被称为挠曲电效应,它会显著影响绝缘体的功能特性,尤其是高介电常数材料的薄膜。我们测量了顺电态SrTiO₃单晶中应变梯度诱导的极化随温度和取向的变化,温度低至并低于105K相变温度。得到了挠曲电张量所有分量的估计值,基于这些值的计算表明,SrTiO₃中缺陷周围的局域极化可能超过最大的铁电极化。在相变温度以下检测到的挠曲电响应的符号反转表明,SrTiO₃的铁弹畴壁可能是极化的。