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铁电/介电超晶格的纳秒动力学。

Nanosecond dynamics of ferroelectric/dielectric superlattices.

机构信息

Department of Materials Science and Engineering and Materials Science Program, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Phys Rev Lett. 2011 Jul 29;107(5):055501. doi: 10.1103/PhysRevLett.107.055501. Epub 2011 Jul 25.

Abstract

The nanosecond response of a PbTiO(3)/SrTiO(3) ferroelectric/dielectric superlattice to applied electric fields is closely linked to the dynamics of striped domains of the remnant polarization. The intensity of domain satellite reflections observed with time-resolved x-ray microdiffraction decays in 5-100 ns depending on the magnitude of the electric field. The piezoelectric response of the superlattice within stripe domains is strongly suppressed due to electromechanical clamping between adjacent regions of opposite polarization. Regions of the superlattice that have been switched into a uniform polarization state by the applied electric field, however, exhibit piezoelectricity during the course of the switching process. We propose a switching model different from previous models of the switching of superlattices, based instead on a spatially heterogeneous transformation between striped and uniform polarization states.

摘要

铁电/介电超晶格中 PbTiO3/SrTiO3 对施加电场的纳秒级响应与剩余极化条纹畴的动力学密切相关。随着时间分辨的 X 射线微衍射,畴卫星反射的强度在 5-100 ns 内衰减,这取决于电场的大小。由于相邻相反极化区域之间的机电夹紧,条纹畴中超晶格的压电响应受到强烈抑制。然而,通过施加电场已被切换到均匀极化状态的超晶格区域在切换过程中表现出压电性。我们提出了一种不同于以前的超晶格切换模型的切换模型,而是基于条纹和均匀极化状态之间的空间不均匀转换。

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