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The Performance of the Magneto-Impedance Effect for the Detection of Superparamagnetic Particles

机译:磁阻抗效应对超顺磁性粒子检测的性能

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摘要

The performance of magneto-impedance sensors to detect the presence and concentration of magnetic nanoparticles is investigated, using finite element calculations to directly solve Maxwell’s equations. In the case of superparamagnetic particles that are not sufficiently magnetized by an external field, it is assumed that the sensitivity of the magneto-impedance sensor to the presence of magnetic nanoparticles comes from the influence of their magnetic permeability on the sensor impedance, and not from the stray magnetic field that the particles produce. The results obtained not only justify this hypothesis, but also provide an explanation for the discrepancies found in the literature about the response of magneto-impedance sensors to the presence of magnetic nanoparticles, where some authors report an increasing magneto-impedance signal when the concentration of magnetic nanoparticles is increased, while others report a decreasing tendency. Additionally, it is demonstrated that sensors with lower magneto-impedance response display larger sensitivities to the presence of magnetic nanoparticles, indicating that the use of plain, nonmagnetic conductors as sensing materials can be beneficial, at least in the case of superparamagnetic particles insufficiently magnetized in an external magnetic field.
机译:利用有限元计算直接求解麦克斯韦方程,研究了磁阻传感器检测磁性纳米粒子的存在和浓度的性能。对于没有被外部磁场充分磁化的超顺磁性颗粒,假定磁阻传感器对存在磁性纳米颗粒的敏感性来自其磁导率对传感器阻抗的影响,而不是来自粒子产生的杂散磁场。获得的结果不仅证明了这一假设的合理性,而且还为文献中发现的关于磁阻传感器对磁性纳米粒子存在响应的差异提供了解释,其中一些作者报告说,当磁阻传感器的浓度增加时,磁阻信号会增加。磁性纳米颗粒增加,而其他纳米颗粒则呈下降趋势。此外,已证明具有较低磁阻响应的传感器对磁性纳米颗粒的存在显示出更高的灵敏度,这表明至少在超顺磁性颗粒未充分磁化的情况下,使用普通的非磁性导体作为传感材料可能是有益的。外部磁场。

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