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Dynamic magnetization properties of a superferromagnetic metal-insulator muitilayer observed by magneto-optic Kerr microscopy

机译:磁光克尔显微镜观察超级磁金属 - 绝缘子镁膜膜的动态磁化性能

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Longitudinal magneto-optical Kerr effect (MOKE) magnetometry and microscopy have been performed on a superferromagnetic (SFM) metal-insulator multilayer of [Co_(80)Fe_(20)(t_n=1.3 nm)/ Al_2O_3(3 nm)]_(10) to understand the dynamic behavior of the SFM domains. Frequency dependent hysteresis loops measured by MOKE show that the coercive field H_c increases as the rate (frequency) of magnetization reversal is increased similar to dynamic hysteresis loops observed on conventional ferromagnetic ultrathin films. This dynamic hysteresis behavior arises due to SFM friction-controlled domain wall motion which is observed by MOKE microscopy. We see that the nucleation field for SFM domains increases for hysteresis loops with higher frequency as expected for a ferroic system.
机译:纵向磁光克尔效应(仲裁)磁力学和显微镜已经在[CO_(80)FE_(20)(T_N = 1.3nm)/ Al_2O_3(3nm)] _( 10)了解SFM域的动态行为。通过Moke测量的频率依赖性滞后环表明,由于磁化反转的速率(频率)增加,矫顽磁场H_c增加与在常规铁磁性超薄薄膜上观察到的动态磁滞回路。由于SOKE显微镜观察到的SFM摩擦控制畴壁运动,该动态滞后行为产生。我们看到SFM结构域的成核区域增加,磁滞回路具有较高频率的频率,这对于铁义系统的预期。

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