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首页> 外文期刊>Journal of King Saud University >Controlled magnetic behaviour of Ni 80Fe 20 nanowire by a selection of nucleation pads
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Controlled magnetic behaviour of Ni 80Fe 20 nanowire by a selection of nucleation pads

机译:NI 80 FE 20 纳米线选择纳米线,选择核心

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Magnetic nanowires are of technological importance as their magnetic properties can be controlled by their dimensions and shape. In soft magnetic nanowires (e.g. Ni 80 Fe 20 alloy or Permalloy), shape anisotropy has a very strong effect on their magnetic properties and thus the wire width and thickness control the domain patterns, nature of magnetization reversal, and the switching field. The switching field of a permalloy (Py) nanowire (NW) can be reduced substantially by attaching a microsized nucleation pad (NPD) to it. In this work, the OOMMF software package was used to perform micromagnetic simulations for selected NPD-NW structures. In this present study, we proved that the shape of the attached NPD is an important factor to consider. For instance, the switching field of structure comprises a triangular NPD (area?=?0.25?μm2) with its head connected to a Py NW (20?nm wide) is about one fourth of the switching field of a square-like NPD-NW structure of the same size. Also the NPD size has an effect on the quality of the obtained hysteresis loop and thus it has to be comparable to the size of the NW for the sake of having a step-free hysteresis loop. These findings suggest that the rectangular NPD with its head connected to the NW may serve better than other shapes as it provides a directed motion for the domain walls to reach the NPD/NW interface easily. Thus it gives the highest reduction in the switching field of the Py nanowire in addition to a step-free hysteresis loop when the NPD size is 0.01?μm2.
机译:磁性纳米线具有技术重要性,因为它们的磁性可以通过它们的尺寸和形状来控制。在软磁纳米线(例如Ni 80 Fe 20合金或Permololoy)中,形状各向异性对它们的磁性具有非常强烈的影响,从而对磁宽和厚度控制域图案,磁化反转的性质和开关场。通过将微硫含量垫(NPD)附着到其上,可以基本上减小渗透合金(PY)纳米线(NW)的开关领域。在这项工作中,Oommf软件包用于对所选NPD-NW结构进行微磁模拟。在本研究中,我们证明所附NPD的形状是需要考虑的重要因素。例如,结构的开关场包括三角形NPD(面积?= 0.25×0.25≤μm2),其头部连接到Py NW(20≤nm宽)是正方形NPD的切换场的四分之一。 NW结构相同的大小。此外,NPD尺寸对所获得的滞后回路的质量具有效果,因此必须与具有维持无级滞后环的NW的尺寸相当。这些发现表明,与其连接到NW的头部的矩形NPD可以比其他形状更好,因为它为域壁提供了易于到达NPD / NW界面的定向运动。因此,当NPD尺寸为0.01Ωμm2时,它除了停靠的滞后环之外,它还提供了PY纳米线的开关场的最高减少。

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