4.8 Article

Large voltage-induced magnetic anisotropy change in a few atomic layers of iron

Journal

NATURE NANOTECHNOLOGY
Volume 4, Issue 3, Pages 158-161

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NNANO.2008.406

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Funding

  1. Ministry of Education, Culture, Sports, Science and Technology-Japan (MEXT) [A19206002]

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In the field of spintronics, researchers have manipulated magnetization using spin-polarized currents(1-3). Another option is to use a voltage-induced symmetry change in a ferromagnetic material to cause changes in magnetization or in magnetic anisotropy(4-14). However, a significant improvement in efficiency is needed before this approach can be used in memory devices with ultralow power consumption. Here, we show that a relatively small electric field (less than 100 mV nm(-1)) can cause a large change (similar to 40%) in the magnetic anisotropy of a bcc Fe(001)/MgO(001) junction. The effect is tentatively attributed to the change in the relative occupation of 3d orbitals of Fe atoms adjacent to the MgO barrier. Simulations confirm that voltage-controlled magnetization switching in magnetic tunnel junctions is possible using the anisotropy change demonstrated here, which could be of use in the development of low-power logic devices and non-volatile memory cells.

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