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Application of a co-resonant sensor concept in cantilever magnetometry

机译:共振传感器概念在悬臂磁力计中的应用

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Cantilever magnetometry is a technique to study magnetic properties of particles and films. Decreasing sample size and thus a loss in signal strength require advances in this technique, regarding cantilever sensitivity and detection. We present a co-resonant magnetometry sensor concept based on a coupled harmonic oscillator, which employs a standard silicon AFM-cantilever with simple laser-deflection measurement but also allows the use of a very sensitive nanocantilever with low mass and spring constant as sensing element. For our magnetometry sensor, the nanocantilever is made of an iron-filled carbon nanotube (FeCNT), simultaneously acting as one of the oscillators and as magnetic sample. We demonstrate the functionality and significant increase in signal strength of our sensor-setup and compare it to other magnetometry experiments with similar FeCNTs.
机译:悬臂磁力计是研究粒子和薄膜的磁性的技术。关于悬臂的灵敏度和检测,减小样本大小并因此降低信号强度要求该技术的进步。我们提出了一种基于耦合谐波振荡器的共谐振磁力计传感器概念,该概念采用了标准的AFM硅悬臂梁,并具有简单的激光偏转测量,还允许使用质量轻且弹簧常数小的非常敏感的纳米悬臂梁作为传感元件。对于我们的磁力传感器,纳米悬臂由铁填充的碳纳米管(FeCNT)制成,同时充当振荡器之一和磁性样品。我们演示了传感器设置的功能和信号强度的显着提高,并将其与其他具有类似FeCNT的磁力测量实验进行了比较。

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