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Chemical Vapor Deposition of an Organic Magnet, Vanadium Tetracyanoethylene
Published on: July 3, 2015
在薄膜铁磁体中,电场诱导的磁力改变
Martin Weisheit1, Sebastian Fähler, Alain Marty
1Institut Néel, CNRS/Université Joseph-Fourier [corrected], 25 Avenue des Martyrs, Boite Postale 166, F-38042 Grenoble Cedex 9, France. martin.weisheit@amd.com
概括
研究人员证明,电场可以改变超薄铁磁膜的磁性特性. 对铁 (FePt) 和铁 (FePd) 薄膜施加电压,改变了它们的强制性,显示了磁性设备控制的潜力.
科学领域:
- 材料科学 材料科学 材料科学
- 凝聚物质物理学 凝聚物质物理学
- 表面科学是一门学科.
背景情况:
- 铁磁材料具有固有的磁性特性.
- 这些属性通常被认为是固定的物质常量.
- 表面效应可以显著影响材料性能,特别是在超薄膜中.
研究的目的:
- 为了研究电场对超薄铁磁膜磁性特性的影响.
- 为了证明铁 (FePt) 和铁 (FePd) 金属间化合物中磁晶异性质的可逆变化.
- 探索电场诱导的磁性特性变化的潜在机制.
主要方法:
- 制造2纳米厚的订制FePt和FePd金属间薄膜.
- 通过电解质应用电场.
- 测量磁性参数的变化,特别是强制性.
- 分析电子密度和未配对的d电子.
主要成果:
- 通过应用电场,可以实现磁晶异构的可逆变化.
- 电压变化为-0.6V改变了FePt薄膜的强制性-4.5%,FePd薄膜的强制性-1%.
- 观察到的磁性变化归因于电场诱导的未配对d电子数量的变化.
结论:
- 电场可以有效调整超薄铁磁膜的磁性.
- 展示的方法提供了一种一般方法,用于表征和控制磁性薄膜系统.
- 这一发现对开发新型磁器件和自旋电子应用有影响.
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