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Magnetic parameters in giant magnetoresistance spin valve and their roles in magnetoresistance sensitivity

机译:巨磁阻自旋阀的磁参数及其在磁阻灵敏度中的作用

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摘要

Giant magnetoresistance (GMR) spin valves are fabricated and their m(H) (m and H are the magnetic moment and applied magnetic field, respectively) and MR(H) (MR is the magnetoresistance) curves are characterized, from which various magnetic parameters including the interlayer coupling field, the anisotropy field of the free and pinned layers, and the exchange bias field of the pinned layer are extracted. A more accurate exchange bias field is obtained by utilizing an analytical equation for the total energy describing the GMR spin valve. The exchange bias field is found to be greater than the bias of the pinned layer magnetization switching obtained from the experimental m(H) loops, with the difference being proportional to the product of the interlayer coupling field and the free layer magnetization. Among the magnetic parameters, the interlayer coupling field is the dominant factor affecting the sensitivity, which is the most important parameter in sensor applications. The anisotropy field of the free layer is the next important parameter in affecting the sensitivity, but its role is significantly less dominant, being only 15% of the role by the interlayer coupling field.
机译:制造了巨磁阻(GMR)自旋阀,并绘制了它们的m(H)(m和H分别是磁矩和施加的磁场)和MR(H)(MR是磁阻)曲线,从中可以得出各种磁参数包括层间耦合场,自由层和被钉扎层的各向异性场以及被钉扎层的交换偏置场。通过使用描述GMR自旋阀的总能量的解析方程式,可以获得更准确的交换偏置场。发现交换偏置场大于从实验m(H)回路获得的固定层磁化切换的偏置,其差与层间耦合场和自由层磁化的乘积成比例。在磁参数中,层间耦合场是影响灵敏度的主要因素,这是传感器应用中最重要的参数。自由层的各向异性场是影响灵敏度的下一个重要参数,但其作用明显不足,仅占层间耦合场作用的15%。

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