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Theory of ferromagnetic resonance driven by the combined action of spin-transfer torque and voltage-controlled magnetic anisotropy

机译:由旋转转矩和电压控制磁各向异性的组合作用驱动的铁磁共振理论

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摘要

An analytical study of the spectral line shape of ferromagnetic resonance (FMR) detected by spin rectification effect and driven by the combined action of spin-transfer torque (STT) and voltage-controlledmagnetic anisotropy (VCMA) is developed. The system under consideration consists of a magnetic tunnel junction (MTJ). Explicit expressions for the symmetric and asymmetric components of the rectified voltage are derived, where the role of the VCMA, in-plane STT, and field-like torque is clearly identified and discussed. Typical geometrical configurations are particularly analyzed and compared with recent experimental results. The analytical findings show that the change of sign in the FMR response upon reversal of the magnetization is completely due to VCMA. By distinguishing in-plane, out-of-plane, and full magnetization reversal processes, it is shown that the VCMA induces a change of sign in the symmetric part for the in-plane and out-of-plane magnetization reversal, while the asymmetric part change its sign under a full and in-plane reversion of the magnetization. Explicit expressions of the symmetric and asymmetric contributions of the spectral line shape allow us to detect under what conditions the STT and VCMA can increase or decrease the FMR spectral line shape. The proposed theory allows access to a better understanding of the physics behind ferromagnetic resonance phenomena, promoting potential applications in STT+VCMA-based MTJs.
机译:开发了由旋转整流效应检测和由旋转转移扭矩(STT)和电压控制磁性各向异性(VCMA)的组合作用驱动的铁磁共振(FMR)的分析研究。所考虑的系统包括磁隧道结(MTJ)。用于对对称电压的对称和非对称组件的显式表达式,其中VCMA,平面STT和场状扭矩的作用清楚地识别和讨论。特别分析典型的几何配置,并与最近的实验结果进行比较。分析结果表明,在磁化反转时,FMR响应的符号变化完全是由于VCMA。通过区分平面内,平面外和完全磁化反转过程,示出了Vcma在不对称的情况下,vcma导致对称部分的符号的变化,而非对称的磁化反转。部分在磁化的完整和面内逆转下改变其符号。光谱线形状的对称和非对称贡献的显式表达允许我们检测STT和Vcma可以增加或减少FMR谱线形状的条件下。所提出的理论允许获得更好地理解铁磁共振现象背后的物理学,促进基于STT + VCMA的MTJS中的潜在应用。

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  • 来源
    《Physical review, B》 |2017年第17期|共7页
  • 作者单位

    Univ Tecn Federico Santa Maria Dept Fis Ave Espana 1680 Valparaiso 2390123 Chile;

    Univ Tecn Federico Santa Maria Dept Fis Ave Espana 1680 Valparaiso 2390123 Chile;

    Univ Tecn Federico Santa Maria Dept Fis Ave Espana 1680 Valparaiso 2390123 Chile;

    Univ Tecn Federico Santa Maria Dept Fis Ave Espana 1680 Valparaiso 2390123 Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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