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Magnetic-field-sensing mechanism based on dual-vortex motion and magnetic noise

机译:基于双涡旋运动和磁噪声的磁场感应机制

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摘要

In this study, we report two novel field sensing mechanisms using elliptical permalloy single layer. Using micromagnetic modeling, dual-vortex structure is observed and stabilized in elliptical permalloy single layer by applying hard bias field (along the y-axis) and vertical axis field (perpendicular to plane). During the increasing or decreasing of the hard bias field within certain range, the dual vortices would move away from or approach to each other at a constant velocity, leading to a positive correlation between the hard bias field and the vortex gap. By exploring the magnetic noise properties of the elliptical permalloy single layer under various vortex gap, the vortex gap is found to be positively correlated with both the FMR (Ferromagnetic Resonance) peak positions and the integrated thermally excited mag-noise. Therefore, the combination of the dual-vortex motion and the magnetic noise properties make it possible to measure external field (along hard bias direction) through measuring the FMR peak positions or integrated thermally mag-noise. This FMR-peak-based field sensing mechanism and integrated-noise-based field sensing introduce a simple field sensor structure with expected highest sensitivity to 1.1%/Oe and field detectable range over 1000 Oe, which is promising for potential sensor applications.
机译:在这项研究中,我们报告了两种使用椭圆坡莫合金单层的新型场感测机制。使用微磁模型,通过施加硬偏置场(沿y轴)和垂直轴场(垂直于平面),观察并稳定了椭圆坡莫合金单层中的双涡结构。在一定范围内硬偏置场的增加或减小期间,双涡旋将以恒定的速度相互远离或接近,从而导致硬偏置场与涡流间隙之间呈正相关。通过探索椭圆形坡莫合金单层在各种旋涡间隙下的磁噪声特性,发现旋涡间隙与FMR(铁磁共振)峰值位置和积分的热激发磁噪声均呈正相关。因此,双涡旋运动和磁噪声特性的组合使得可以通过测量FMR峰值位置或积分热磁噪声来测量外部磁场(沿硬偏置方向)。这种基于FMR峰值的场感测机制和基于集成噪声的场感测引入了一种简单的场传感器结构,其预期的最高灵敏度为1.1%/ Oe,场可检测范围超过1000 Oe,这有望在潜在的传感器应用中实现。

著录项

  • 来源
    《Journal of Applied Physics 》 |2014年第3期| 17D142.1-17D142.3| 共3页
  • 作者单位

    Department of Electrical and Electronic Engineering, The University of Hong Kong, Hong Kong;

    Department of Physics, The University of Hong Kong, Hong Kong;

    Department of Materials Science and Engineering, National Chung Hsing University, Taichung, Taiwan;

    Department of Electrical and Electronic Engineering, The University of Hong Kong, Hong Kong;

    Department of Electrical and Electronic Engineering, The University of Hong Kong, Hong Kong;

  • 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

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