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Effect of Low-Frequency AC Magnetic Susceptibility and Magnetic Properties of CoFeB/MgO/CoFeB Magnetic Tunnel Junctions

机译:低频交流磁化率和CoFeB / MgO / CoFeB磁性隧道结的磁性能的影响

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摘要

In this investigation, the low-frequency alternate-current (AC) magnetic susceptibility (χac) and hysteresis loop of various MgO thickness in CoFeB/MgO/CoFeB magnetic tunneling junction (MTJ) determined coercivity (Hc) and magnetization (Ms) and correlated that with χac maxima. The multilayer films were sputtered onto glass substrates and the thickness of intermediate barrier MgO layer was varied from 6 to 15 Å. An experiment was also performed to examine the variation of the highest χac and maximum phase angle (θmax) at the optimal resonance frequency (fres), at which the spin sensitivity is maximal. The results reveal that χac falls as the frequency increases due to the relationship between magnetization and thickness of the barrier layer. The maximum χac is at 10 Hz that is related to the maximal spin sensitivity and that this corresponds to a MgO layer of 11 Å. This result also suggests that the spin sensitivity is related to both highest χac and maximum phase angle. The corresponding maximum of χac is related to high exchange coupling. High coercivity and saturation magnetization contribute to high exchange-coupling χac strength.
机译:在这项研究中,在CoFeB / MgO / CoFeB磁性隧穿结(MTJ)中各种MgO厚度的低频交流(AC)磁化率(χac)和磁滞回线确定了矫顽力(Hc)和磁化强度(Ms)并进行了相关χac最大值。将多层膜溅射到玻璃基板上,中间势垒MgO层的厚度从6到15 varied不等。还进行了一项实验,以检查自旋灵敏度最大的最佳共振频率(fres)处最高ac和最大相角(θmax)的变化。结果表明,由于磁化强度和势垒层厚度之间的关系,χac随着频率的增加而下降。最大χac在10 Hz,与最大自旋灵敏度相关,这对应于11的MgO层。该结果还表明自旋灵敏度与最高χac和最大相角有关。 χac的相应最大值与高交换耦合有关。高矫顽力和饱和磁化强度有助于提高交流耦合χac强度。

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