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Formation and observation of ferroelectric domains in PbZr1-xTixO3(PZT) thin films using atomic force microscopy

机译:PbZr1-xTixO3(PZT)薄膜中铁电畴的形成和原子力显微镜观察

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Abstract: Very small-sized ferroelectric domains were induced and observed using a modified atomic force microscopy (AFM). Bias voltage between a conductive AFM tip and a sol-gel processed PZT film caused the switching of small ferroelectric domains. ELectrostatic forces between the polarized area and the tip provide the imaging of the polarized small domains. Applying voltage with the opposite sign can depolarize the polarized area and the formation of a series of data dots was demonstrated. In addition, the retention phenomena of micron size domains in PZT films were investigated. The polarized images disappeared within a few days even without an application of voltage - often called the retention loss or failure. An empirical relationship between relaxation time, bit size and poling time is established and verified. Two operative processes for the retention loss are either the stray charge accumulation on the polarized surfaces or the stress relaxation of the piezoelectric films. An effective way of improving the retention characteristics is suggested. The experimental results obtained in this study provide substantial insight into the mechanism for the retention failure of the polarized domains as well as the polarization behavior in PZT films with a nanometer scale. !26
机译:摘要:使用改进的原子力显微镜(AFM)诱导并观察到非常小的铁电畴。导电AFM尖端和经溶胶凝胶处理的PZT膜之间的偏置电压引起小的铁电畴的切换。极化区域和尖端之间的静电力提供了极化小畴的成像。施加具有相反符号的电压可以使极化区域去极化,并演示了一系列数据点的形成。另外,研究了PZT膜中微米尺寸域的保留现象。即使没有施加电压,极化图像在几天之内也会消失-通常称为保持损耗或故障。建立并验证了弛豫时间,位大小和极化时间之间的经验关系。保持损耗的两个操作过程是极化表面上的杂散电荷积累或压电膜的应力松弛。提出了一种改善保留特性的有效方法。在这项研究中获得的实验结果为极化域的保留失效机理以及具有纳米级的PZT薄膜的极化行为提供了实质性的见识。 !26

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