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Magnetic Tunnel Junction Sensors With Conetic Alloy

机译:锥形合金的磁性隧道结传感器

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Al$_{2}$O$_{3}$ magnetic tunneling junction (MTJ) sensors were fabricated with Conetic alloy Ni $_{77}$Fe $_{14}$Cu $_{5}$Mo $_{4}$ deposited as the free layer and pinned layer for its soft magnetic properties. It was observed that the Al$_{2}$O $_{3}$ MTJ sensors with Conetic exhibited relatively small easy-axis coercivity. Tunneling magnetoresistance (TMR) and noise measurements were carried out to characterize the sensors. TMR of 9.5% and Hooge parameter of $3.825 times 10^{-7} mu$m$^{2}$ were achieved without any hard-axis field. Hard-axis bias field was applied to eliminate the hysteresis and improve the linear field response of the MTJ sensor. The hysteresis was removed by applying an external magnetic field along the hard axis at 8 Oe and the sensor sensitivity was 0.4 %/Oe within a linear region at room temperature. The relationship between the Hooge parameter and hard-axis field was also investigated and the result demonstrated that the 1/f noise can be suppressed by an optimized hard-axis bias field. This work shows that it is feasible to use Conetic alloy as the soft magnetic layers in MTJ sensors for its small coercivity, and a hard-axis bias field can be used to linearize the sensor response and suppress the 1/f noise.
机译:Al $ _ {2} $ O $ _ {3} $磁性隧道结(MTJ)传感器是用Conetic合金Ni $ _ {77} $ Fe $ _ {14} $ Cu $ _ {5} $ Mo $ _制造的{4} $沉积为自由层和固定层,因为其具有软磁特性。观察到带有Conetic的Al $ _ {2} $ O $ _ {3} $ MTJ传感器具有相对较小的易轴矫顽力。进行隧道磁阻(TMR)和噪声测量以表征传感器。在没有任何硬轴场的情况下,可实现9.5%的TMR和$ 3.825的Hooge参数乘以10 ^ {-7} mu $ m $ ^ {2} $。施加硬轴偏置磁场以消除磁滞现象并改善MTJ传感器的线性磁场响应。通过沿硬轴在8 Oe处施加外部磁场来消除磁滞,并且在室温下线性区域内的传感器灵敏度为0.4%/ Oe。还研究了Hooge参数与硬轴场之间的关系,结果表明,通过优化的硬轴偏置场可以抑制1 / f噪声。这项工作表明,将Conetic合金用作MTJ传感器中的软磁层是可行的,因为它具有较小的矫顽力,并且可以使用硬轴偏置磁场来线性化传感器响应并抑制1 / f噪声。

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