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Temperature Effect on the Stability of the Polarized State Created by Local Electric Fields in Strontium Barium Niobate Single Crystals

机译:温度对铌酸锶钡单晶局部电场产生的极化态稳定性的影响

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摘要

The stability of ferroelectric domain patterns at the nanoscale has been a topic of much interest for many years. We investigated the relaxation of the polarized state created by application of a local electric field using a conductive tip of a scanning probe microscope for the model uniaxial relaxor system SrxBa1−xNb2O6 (SBN) in its pure and Ce-doped form. The temporal relaxation of the induced PFM contrast was measured at various temperatures. The average value of the induced contrast decreases during heating for all investigated crystals. Below the freezing temperature the induced state remains stable after an initial relaxation. Above the freezing temperature the induced state is unstable and gradually decays with time. The stability of the induced state is strongly affected by the measuring conditions, so continuous scanning results in a faster decay of the poled domain. The obtained effects are attributed to a decrease of the induced polarization and backswitching of the polarized area under the action of the depolarization field.
机译:多年来,铁电畴图案在纳米尺度上的稳定性一直是人们非常感兴趣的话题。我们研究了使用扫描探针显微镜的导电尖端对纯净和掺杂Ce的模型单轴弛豫系统SrxBa1-xNb2O6(SBN)施加的局部电场所产生的极化态的弛豫。在不同温度下测量诱导的PFM对比的时间弛豫。对于所有研究的晶体,在加热过程中,诱导对比度的平均值降低。低于冷冻温度,诱导状态在初始松弛后保持稳定。高于冰点温度,诱导状态不稳定,并随时间逐渐衰减。感应状态的稳定性受测量条件的强烈影响,因此连续扫描会导致极化域更快地衰减。获得的效果归因于在去极化场的作用下感应极化的减少和极化区域的反向转换。

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