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Dynamic Lorentz microscopy of micromagnetic structure in magnetic tunnel junctions

机译:磁性隧道结中微磁结构的动态洛伦兹显微镜

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摘要

Lorentz microscopy was used to study the micromagnetic structure and magnetization reversal in magnetic tunnel junctions (MTJs) fabricated with different processing conditions including a preoxidation process. The authors find that the free layer in a MTJ has considerably more disorder than that seen in an isolated magnetic layer. The disorder changes with anneals that set the exchange bias, suggesting that the disorder arises from the antiferromagnetic layer and is transferred to the free layer by magnetostatic Neel coupling. The disorder and time-dependent fluctuations in the magnetic structure provide a foundation for understanding several sources of 1/f noise in MTJs.
机译:Lorentz显微镜用于研究采用不同工艺条件(包括预氧化工艺)制造的磁隧道结(MTJ)的微磁结构和磁化反转。作者发现,MTJ中的自由层比隔离磁层中的自由层具有更多的无序性。该无序随设定交换偏压的退火而变化,这表明该无序起因于反铁磁层,并通过静磁尼尔耦合转移至自由层。磁性结构的无序和随时间变化的波动为理解MTJ中1 / f噪声的几种来源提供了基础。

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