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Magnetic properties of individual Co2FeGa Heusler nanoparticles studied at room temperature by a highly sensitive co-resonant cantilever sensor

机译:高灵敏度的共共振悬臂传感器在室温下研究单个Co2FeGa Heusler纳米粒子的磁性

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摘要

The investigation of properties of nanoparticles is an important task to pave the way for progress and new applications in many fields of research like biotechnology, medicine and magnetic storage techniques. The study of nanoparticles with ever decreasing size is a challenge for commonly employed methods and techniques. It requires increasingly complex measurement setups, often low temperatures and a size reduction of the respective sensors to achieve the necessary sensitivity and resolution. Here, we present results on how magnetic properties of individual nanoparticles can be measured at room temperature and with a conventional scanning force microscopy setup combined with a co-resonant cantilever magnetometry approach. We investigate individual Co2FeGa Heusler nanoparticles with diameters of the order of 35 nm encapsulated in carbon nanotubes. We observed, for the first time, magnetic switching of these nanoparticles in an external magnetic field by simple laser deflection detection. Furthermore, we were able to deduce magnetic properties of these nanoparticles which are in good agreement with previous results obtained with large nanoparticle ensembles in other experiments. In order to do this, we expand the analytical description of the frequency shift signal in cantilever magnetometry to a more general formulation, taking unaligned sensor oscillation directions with respect to the magnetic field into account.
机译:纳米粒子特性的研究是一项重要任务,为生物技术,医学和磁存储技术等许多研究领域的进步和新应用铺平道路。对于尺寸不断减小的纳米颗粒的研究对于常用的方法和技术是一个挑战。为了实现必要的灵敏度和分辨率,它需要越来越复杂的测量设置,通常较低的温度以及相应传感器的尺寸减小。在这里,我们介绍了如何在室温下使用常规扫描力显微镜设置以及共共振悬臂磁强计方法测量单个纳米粒子的磁性的结果。我们研究封装在碳纳米管中的直径为35纳米的Co2FeGa Heusler纳米颗粒。我们首次通过简单的激光偏转检测观察到了这些纳米颗粒在外部磁场中的磁性转换。此外,我们能够推断出这些纳米粒子的磁性,这与其他实验中使用大型纳米粒子集合体获得的先前结果非常吻合。为了做到这一点,我们将悬臂磁力计中频移信号的分析描述扩展到一个更通用的公式,其中考虑了相对于磁场的未对准传感器振荡方向。

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