Magnetic field observation in a magnetic tunnel junction by scanning transmission electron microscopy.

Yuji Kohno, Takehito Seki, Shun Tsuruoka, Shinobu Ohya, Naoya Shibata
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Abstract

A magnetic tunnel junction (MTJ) consists of two ferromagnetic layers separated by a thin insulating layer. MTJs show tunnel magnetoresistance effect, where the resistance in the direction perpendicular to the insulator layer drastically changes depending on the magnetization directions (parallel or antiparallel) in the ferromagnetic layers. However, direct observation of local magnetizations inside MTJs has been challenging. In this study, we demonstrate direct observation of magnetic flux density distribution inside epitaxially grown Fe/MgO/Fe layers using differential phase contrast scanning transmission electron microscopy. By utilizing newly developed tilt-scan averaging system for suppressing diffraction contrasts, we clearly visualize parallel and antiparallel states of ferromagnetic layers at nanometer resolution.

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用扫描透射电子显微镜观察磁隧道结中的磁场。
磁隧道结(MTJ)由两个被薄绝缘层隔开的铁磁层组成。MTJ 具有隧道磁阻效应,在垂直于绝缘层的方向上,电阻会根据铁磁层的磁化方向(平行或反平行)发生急剧变化。然而,直接观察 MTJ 内部的局部磁化一直是个挑战。在本研究中,我们展示了利用差分相衬扫描透射电子显微镜直接观察外延生长的铁/氧化镁/铁层内部磁通密度分布的方法。通过利用新开发的倾斜扫描平均系统抑制衍射对比,我们以纳米分辨率清晰地观察到了铁磁层的平行和反平行状态。
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