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首页> 外文期刊>Journal of magnetism and magnetic materials >Study of angular dependence of exchange bias and misalignment in uniaxial and unidirectional anisotropy in NiFe(111)/FeMn(111)/CoFeB (amorphous) stack
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Study of angular dependence of exchange bias and misalignment in uniaxial and unidirectional anisotropy in NiFe(111)/FeMn(111)/CoFeB (amorphous) stack

机译:NiFe(111)/ FeMn(111)/ CoFeB(非晶态)堆中单轴和单向各向异性中交换偏压和未对准的角度依赖性研究

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We report the investigation of the in-plane azimuthal angular dependence of the magnetization reversal in the ion beam sputtered exchanged biased NiFe(111)/FeMn(111)/CoFeB(amorphous) stack. Compared to the as-deposited case, the magnetic annealing resulted in 3 fold enhancement in exchange bias but decrease in coercivity. The observed cosine dependence of exchange biased CoFeB layer on the in-plane azimuthal angle of applied field is corroborated with Meiklejohn and Bean model. The training effect associated with the exchange bias showed unconventional increase in coercivity after first cycle of hysteresis loop, while the exchange bias decreases sharply, and for subsequent cycles the exchange bias follows the empirical relation based on the energy dissipation in the AF layer. The ferromagnetic resonance (FMR) measurements also exhibited the in-plane azimuthal angle dependence of the magnetic resonance field indicating that the uniaxial and unidirectional anisotropies are not collinear, although they lie in the same plane. However, no misalignment between the unidirectional anisotropy and the exchange bias direction is observed. The misalignment angle between the uniaxial and unidirectional anisotropy, as measured by FMR, is found to be 10° and 14° for CoFeB and NiFe, respectively. This misalignment is attributed to the interface roughness as revealed by x-ray reflectance measurements.
机译:我们报告了离子束溅射交换偏置NiFe(111)/ FeMn(111)/ CoFeB(非晶)叠层中磁化反转的面内方位角依赖性的研究。与沉积的情况相比,磁退火导致交换偏压提高了3倍,但矫顽力降低了。 Meiklejohn和Bean模型证实了观察到的交换偏置CoFeB层对施加电场的面内方位角的余弦依赖性。与交换偏置相关的训练效果显示,在磁滞回线的第一个循环之后,矫顽力非常规地增加,而交换偏置急剧减小,并且在随后的循环中,交换偏置遵循基于AF层中能量耗散的经验关系。铁磁共振(FMR)测量还显示了磁共振场的面内方位角依赖性,表明尽管它们位于同一平面内,但单轴各向异性和单向各向异性不是共线的。但是,没有观察到单向各向异性和交换偏压方向之间的未对准。通过FMR测量得出的CoFeB和NiFe的单轴各向异性和单向各向异性之间的失准角分别为10°和14°。如X射线反射率测量所揭示的,这种未对准归因于界面粗糙度。

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