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Magnetic properties of nanomagnetic and biomagnetic systems analyzed using cantilever magnetometry

机译:使用悬臂磁力分析法分析纳米磁性和生物磁性系统的磁性

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摘要

Magnetic properties of nanomagnetic and biomagnetic systems are investigated using cantilever magnetometry. In the presence of a magnetic field, magnetic films or particles deposited at the free end of a cantilever give rise to a torque on the mechanical sensor, which leads to frequency shifts depending on the applied magnetic field. From the frequency response, the magnetic properties of a magnetic sample are obtained. The magnetic field dependences of paramagnetic and ferromagnetic thin films and particles are measured in a temperature range of 5-320K at a pressure below 10- 6mbar. We present magnetic properties of the ferromagnetic materials Fe, Co and Ni at room temperature and also for the rare earth elements Gd, Dy and Tb at various temperatures. In addition, the magnetic moments of magnetotactic bacteria are measured under vacuum conditions at room temperature. Cantilever magnetometry is a highly sensitive tool for characterizing systems with small magnetic moments. By reducing the cantilever dimensions the sensitivity can be increased by an order of magnitude.
机译:纳米磁性和生物磁性系统的磁性能使用悬臂磁力计进行了研究。在存在磁场的情况下,沉积在悬臂自由端的磁性膜或颗粒会在机械传感器上产生扭矩,这会导致频率偏移,具体取决于所施加的磁场。根据频率响应,获得磁性样品的磁性。在5-320K的温度范围内,低于10-6mbar的压力下测量顺磁性和铁磁性薄膜及颗粒的磁场依赖性。我们介绍了铁磁性材料Fe,Co和Ni在室温下的磁性能,以及在各种温度下稀土元素Gd,Dy和Tb的磁性能。另外,趋磁细菌的磁矩是在室温下真空条件下测量的。悬臂磁力计是用于表征具有较小磁矩的系统的高度灵敏的工具。通过减小悬臂尺寸,可以将灵敏度提高一个数量级。

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