首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Studies of the Room-Temperature Multiferroic Pb(Fe0.5Ta0.5)0.4(Zr0.53Ti0.47)0.6O3: Resonant Ultrasound Spectroscopy Dielectric and Magnetic Phenomena
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Studies of the Room-Temperature Multiferroic Pb(Fe0.5Ta0.5)0.4(Zr0.53Ti0.47)0.6O3: Resonant Ultrasound Spectroscopy Dielectric and Magnetic Phenomena

机译:室温多铁性Pb(Fe0.5Ta0.5)0.4(Zr0.53Ti0.47)0.6O3的研究:共振超声光谱介电和磁现象

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摘要

Recently, lead iron tantalate/lead zirconium titanate (PZTFT) was demonstrated to possess large, but unreliable, magnetoelectric coupling at room temperature. Such large coupling would be desirable for device applications but reproducibility would also be critical. To better understand the coupling, the properties of all 3 ferroic order parameters, elastic, electric, and magnetic, believed to be present in the material across a range of temperatures, are investigated. In high temperature elastic data, an anomaly is observed at the orthorhombic mm2 to tetragonal 4mm transition, Tot = 475 K, and a softening trend is observed as the temperature is increased toward 1300 K, where the material is known to become cubic. Thermal degradation makes it impossible to measure elastic behavior up to this temperature, however. In the low temperature region, there are elastic anomalies near ≈40 K and in the range 160–245 K. The former is interpreted as being due to a magnetic ordering transition and the latter is interpreted as a hysteretic regime of mixed rhombohedral and orthorhombic structures. Electrical and magnetic data collected below room temperature show anomalies at remarkably similar temperature ranges to the elastic data. These observations are used to suggest that the three order parameters in PZTFT are strongly coupled.
机译:最近,已证明钽酸铅/钛酸锆铅(PZTFT)在室温下具有较大但不可靠的磁电耦合。如此大的耦合对于设备应用将是期望的,但是再现性也很关键。为了更好地理解耦合,研究了在温度范围内材料中存在的所有三个铁性有序参数(弹性,电和磁)的特性。在高温弹性数据中,在正交的mm2到四边形的4mm过渡处观察到异常,Tot = 475 K,并且随着温度向1300 K升高而观察到软化趋势,已知该材料变为立方。但是,热降解使得无法测量到此温度的弹性行为。在低温区域,在≈40K附近且在160-245 K范围内存在弹性异常。前者被解释为是由于磁性有序过渡,而后者则被解释为菱形和斜方体混合结构的滞后状态。在室温以下收集的电磁数据显示出与弹性数据极为相似的温度范围内的异常。这些观察结果表明,PZTFT中的三个阶参数是强耦合的。

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