Daniels John E, Pramanick Abhijit, Jones Jacob L
European Synchrotron Radiation Facility (ESRF), Grenoble, France.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Aug;56(8):1539-45. doi: 10.1109/TUFFC.2009.1218.
Diffraction provides an effective means to characterize ferroelectric materials under the application of dynamic and cyclic electric fields. This paper describes a typical timeresolved diffraction setup at a synchrotron facility using high X-ray energies. Such a setup is capable of measuring the structural response of ferroelectric ceramics to electric fields of various frequencies, amplitudes, and waveforms. The use of high energies also allows the response of the sample to be measured at various angles to the applied load. The results of 3 different types of electric loading are presented and discussed: the structural response of ferroelectric ceramics to a single electric field step function, a cyclic electric field of square waveform, and a cyclic electric field of sinusoidal waveform. Each type of electric field loading provides unique information about the material behavior.
衍射提供了一种在动态和循环电场作用下表征铁电材料的有效方法。本文描述了一种在同步加速器设施中使用高X射线能量的典型时间分辨衍射装置。这种装置能够测量铁电陶瓷对各种频率、幅度和波形的电场的结构响应。使用高能量还允许在与施加负载的不同角度测量样品的响应。给出并讨论了3种不同类型电负载的结果:铁电陶瓷对单个电场阶跃函数、方波循环电场和正弦波循环电场的结构响应。每种类型的电场负载都提供了关于材料行为的独特信息。