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An acoustic teaching model illustrating the principles of dynamic mode magnetic force microscopy

机译:一种声学教学模式,说明动态模式磁力显微镜的原理

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Magnetic force microscopy (MFM) represents a versatile technique within the manifold methods of scanning probe microscopy (SPM), focusing on the investigation of magnetic phenomena at the nanoscale. Although magnetism is a fundamental element of physics education, educational content at the cutting edge of actual scientific topics and techniques in magnetism, like MFM, is lacking. Therefore, we present a scaled teaching model imparting the core principles of MFM, implementing a macroscopic model operating in dynamic mode. The experimental configuration of the model is based on popular bricks by LEGO and drivers based on LEGO Mind-storms (Lego, Billund, Denmark), as well as on further off the shelf components being easily accessible for schools and universities. Investigations of macroscopic magnetic structures reveal numerical, visual and auditory information based on magnetic forces between an oscillating cantilever and ferromagnetic samples allowing a sensual experience of force microscopy for students. Along these lines, students obtain multiple representations to study the precision measurement process of SPM in general and MFM in particular at a scale that allows experiencing micro- and nanoscopic effects. The magnetic force gradients and spatial resolution of the macroscopic model are in agreement with those of an authentic microscopic magnetic force microscope.
机译:磁力显微镜(MFM)表示扫描探针显微镜(SPM)的歧管方法内的通用技术,其专注于纳米级磁性现象的研究。虽然磁性是物理教育的基本要素,但缺乏MFM的实际科学主题和技术的实际科学主题和技术的教育内容。因此,我们提出了一种赋予MFM核心原理的缩放教学模型,实现了在动态模式下运行的宏观模型。该模型的实验配置基于乐高和基于乐高思维风暴的驾驶员(Lego,Billund,Denmark)的流行砖,以及进一步从学校和大学轻松访问的货架组件。宏观磁性结构的研究基于振荡悬臂和铁磁样品之间的磁力显示数值,视觉和听觉信息,允许学生的力显微镜感觉的感性体验。沿着这些线路,学生获得多种表示,以研究SPM一般和MFM的精确测量过程,特别是允许经历微型和纳米镜效应的规模。宏观模型的磁力梯度和空间分辨率与真实的显微磁力显微镜的磁力梯度和空间分辨率一致。

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