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Semiconductor/ferromagnet hybrid devices to probe magnetisation states in microstructured NiFe rings

机译:半导体/铁磁体混合器件,用于探测微结构化NiFe环中的磁化状态

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Magnetisation reversal processes of microstructured NiFe rings are studied by fringing-field-induced local Hall effect (LHE) and numerical model calculations. This semiconductor-based technique yields a high sensitivity of magnetic stray fields and allows the authors to detect magnetisation hysteresis loops of single NiFe rings. For narrow rings, sharp transitions from so called 'onion' to the 'vortex' state are detected. Only onion and global vortex states are possible magnetisation configurations in narrow rings. In rings with smaller inner diameter, the transitions are more complex. The minor loop analysis of rings shows that onion and global vortex states are stable and independent of the magnetic history, but the local vortex state depends on the way the magnetic field has been swept beforehand. The switching fields can be controlled by the inner diameter in good agreement with the computational results.
机译:通过边缘场感应的局部霍尔效应(LHE)和数值模型计算研究了微结构化NiFe环的磁化反转过程。这种基于半导体的技术产生了对杂散磁场的高灵敏度,并允许作者检测单个NiFe环的磁化磁滞回线。对于窄环,检测到从所谓的“洋葱”状态到“涡旋”状态的急剧转变。在狭窄的环中,只有洋葱和整体涡旋状态是可能的磁化配置。在具有较小内径的环中,过渡更为复杂。对环的次要环分析表明,洋葱和整体涡旋状态稳定且与磁历史无关,但是局部涡旋状态取决于预先清除磁场的方式。可以通过内径控制开关场,使其与计算结果非常吻合。

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