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Tunable surface acoustic waves on strain- engineered relaxor K_(0.7)Na_(0.3)NbO_3 thin films

机译:应变工程弛豫器K_(0.7)Na_(0.3)NbO_3薄膜上的可调表面声波

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摘要

In this work, we demonstrate the electronic tunability of surface acoustic waves (SAWs) in epitaxially strained relaxor-type ferroelectric thin films. Epitaxial K0.7Na0.3NbO3 thin films of typically 30 nm in thickness are grown via pulsed laser deposition on (110)-oriented TbScO3. A partial plastic lattice relaxation of the epitaxial strain in these samples leads to a relaxor-type ferroelectricity of these films, which strongly affects the SAW properties. Without electronic bias, only tiny SAW signals of similar to 0.2 dB can be detected at room temperature, which can be boosted up to similar to 4 dB by a static voltage bias added to the high frequency driving current of the SAW transducers. Upon field cooling below the freezing temperature of polar nanoregions (PNRs), this strong SAW signal can be preserved and is even enhanced due to a release of the electronically fixed PNRs if the bias is removed. In contrast, at elevated temperatures, a reversible switching of the SAW signal is possible. The switching shows relaxation dynamics that are typical for relaxor ferroelectrics. The relaxation time tau decreases exponentially from several hours at freezing temperature to a few seconds (<5 s) at room temperature.
机译:在这项工作中,我们证明了外延应变弛豫型铁电薄膜中表面声波(SAW)的电子可调性。通过脉冲激光沉积在(110)取向的TbScO3上生长通常厚度为30 nm的外延K0.7Na0.3NbO3薄膜。这些样品中外延应变的部分塑性晶格弛豫导致这些薄膜的弛豫型铁电,这严重影响了SAW性能。如果没有电子偏置,则只能在室温下检测到接近0.2 dB的微小SAW信号,而SAW换能器的高频驱动电流上会加上一个静态电压偏置,从而可以将其放大到接近4 dB。在低于极性纳米区域(PNR)冻结温度的场冷却条件下,如果消除了偏压,则由于释放了电子固定的PNR,因此可以保留并增强这种强声表面波信号。相反,在升高的温度下,SAW信号的可逆切换是可能的。切换显示出弛豫动力学,这是弛豫铁电体的典型特征。弛豫时间tau从冻结温度的几小时到室温的几秒钟(<5 s)呈指数下降。

著录项

  • 来源
    《Applied Physics Letters》 |2020年第5期|052902.1-052902.5|共5页
  • 作者

  • 作者单位

    Forschungszentrum Julich Inst Complex Syst Bioelect ICS 8 D-52425 Julich Germany;

    Leibniz Inst Crystal Growth IKZ D-12489 Berlin Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:22:24

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