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Static and dynamic magnetic properties of Ni_(80)Fe_(20) anti-ring nanostructures

机译:Ni_(80)Fe_(20)抗环纳米结构的静态和动态磁性能

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The static and dynamic behavior of Ni_(80)Fe_(20) anti-ring arrays has been systematically investigated using broadband ferromagnetic resonance (FMR) spectroscopy, magneto-optical Kerr effect (MOKE), and magnetic force microscopy (MFM). The unit cell of this periodic lattice represents a hole in a continuous film, with an elliptical nanodot placed in the middle of the hole. The FMR responses display multiple absorption peaks due to the superposition of the absorptions from the anti-dot and the central nanomagnet (dot) regions of the anti-ring structures. Interestingly, for fixed anti-ring geometry, the static and dynamic behavior is markedly sensitive to the thickness of the structure due to complicated spatial distributions of the demagnetizing field. Direct MFM imaging reveals that at remanence, the central nanomagnets are in a single-domain state, for small sample thicknesses, whereas for larger thicknesses, they display a multidomain or vortex state. This observation is in good agreement with both FMR and MOKE data. All our results agree well with micromagnetic simulations.
机译:Ni_(80)Fe_(20)抗环阵列的静态和动态行为已使用宽带铁磁共振(FMR)光谱,磁光克尔效应(MOKE)和磁力显微镜(MFM)进行了系统研究。该周期性晶格的晶胞代表连续膜中的孔,椭圆纳米点位于孔的中间。 FMR响应显示出多个吸收峰,这是由于来自反点和反环结构的中央纳米磁体(点)区域的吸收的叠加。有趣的是,由于消磁场的复杂的空间分布,对于固定的抗环几何形状,静态和动态行为对结构的厚度非常敏感。直接MFM成像显示,剩磁时,中心纳米磁体处于单畴状态,对于较小的样品厚度,而对于较大的厚度,它们显示多畴或涡旋状态。这一观察结果与FMR和MOKE数据都非常吻合。我们所有的结果都与微磁模拟非常吻合。

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