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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Determination of the exchange constant of Tb_(0.3)Dy_(0.7)Fe_2 by broadband ferromagnetic resonance spectroscopy
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Determination of the exchange constant of Tb_(0.3)Dy_(0.7)Fe_2 by broadband ferromagnetic resonance spectroscopy

机译:宽带铁磁共振光谱法测定Tb_(0.3)Dy_(0.7)Fe_2的交换常数

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摘要

We present measurements of the exchange stiffness D and the exchange constant A of a sputtered 80 nm Tb_(0.3)Dy_(0.7)Fe_2 film. Using a broadband ferromagnetic resonance setup in a wide frequency range from 10 to 50 GHz, multiple perpendicular standing spin-wave resonances were observed with the external static magnetic field applied in-plane. The field corresponding to the strongest resonance peak at each frequency is used to determine the effective magnetization, the g factor, and the Gilbert damping. Furthermore, the dependence of spin-wave mode on field position is observed for several frequencies. The analysis of spin-wave resonance spectra at multiple frequencies allows precise determination of the exchange stiffness D = (2.79 ± 0.02) × 10~(-17) Tm~2 for an 80 nm thick film. From this value, we calculated the exchange constant A = (9.1 ± 0.1) pJ m~(-1).
机译:我们提出了溅射的80 nm Tb_(0.3)Dy_(0.7)Fe_2薄膜的交换刚度D和交换常数A的测量值。在10至50 GHz的宽频率范围内使用宽带铁磁谐振装置,在平面内施加外部静磁场的情况下,观察到了多个垂直的自旋波谐振。对应于每个频率下最强共振峰的场用于确定有效磁化强度,g因子和吉尔伯特阻尼。此外,在几个频率上都观察到了自旋波模式对场位置的依赖性。通过对多个频率下的自旋波共振光谱进行分析,可以精确确定80 nm厚膜的交换刚度D =(2.79±0.02)×10〜(-17)Tm〜2。根据该值,我们计算出交换常数A =(9.1±0.1)pJ m〜(-1)。

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  • 来源
    《Physical review. B, Condensed Matter And Materials Physics》 |2016年第6期|064425.1-064425.4|共4页
  • 作者单位

    Materials Science and Engineering Division, NIST, Gaithersburg, Maryland 20899, USA;

    Materials Science and Engineering Division, NIST, Gaithersburg, Maryland 20899, USA;

    Department of Mechanical and Aerospace Engineering, University of California, Los Angeles, California 90095, USA;

    Department of Mechanical and Aerospace Engineering, University of California, Los Angeles, California 90095, USA;

    Department of Mechanical and Aerospace Engineering, University of California, Los Angeles, California 90095, USA;

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