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Dependence of noise in magnetic tunnel junction sensors on annealing field and temperature

机译:磁隧道结传感器噪声对退火场和温度的依赖性

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摘要

The minimum detectable field of magnetoresistive sensors is limited by their intrinsic noise. Magnetization fluctuations are one of the crucial noise sources and are related to the magnetization alignment at the antiferromagnetic-ferromagnetic interface. In this study, we investigated the low frequency noise of magnetic tunnel junctions (MTJs) annealed in the temperature range from 265 to 305 °C and magnetic fields up to 7 T, either in helium or hydrogen environments. Our results indicate that the magnetic fluctuators in these MTJs changed their frequency based on annealing field and temperature. The noise of the MTJs at low frequency can be reduced by annealing in high magnetic field (7 T) and further improved by annealing in a hydrogen environment.
机译:磁阻传感器的最小可检测场受到其固有噪声的限制。磁化波动是关键的噪声源之一,并且与反铁磁-铁磁界面处的磁化对准有关。在这项研究中,我们研究了在265到305°C的温度范围内退火的磁性隧道结(MTJ)的低频噪声,以及在氦气或氢气环境中退火磁场高达7 T的情况。我们的结果表明,这些MTJ中的电磁波动器会根据退火场和温度改变其频率。可以通过在高磁场(7 T)中进行退火来降低低频MTJ的噪声,并通过在氢环境中进行退火来进一步改善。

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