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首页> 外文期刊>Nature Materials >Ferroelectrically tunable magnetic skyrmions in ultrathin oxide heterostructures
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Ferroelectrically tunable magnetic skyrmions in ultrathin oxide heterostructures

机译:超薄氧化物异质结构中的铁电可调谐磁性天体

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摘要

Magnetic skyrmions are topologically protected whirling spin texture. Their nanoscale dimensions, topologically protected stability and solitonic nature, together are promising for future spintronics applications. To translate these compelling features into practical spintronic devices, a key challenge lies in achieving effective control of skyrmion properties, such as size, density and thermodynamic stability. Here, we report the discovery of ferroelectrically tunable skyrmions in ultrathin BaTiO3/SrRuO3 bilayer heterostructures. The ferroelectric proximity effect at the BaTiO3/SrRuO3 heterointerface triggers a sizeable Dzyaloshinskii-Moriya interaction, thus stabilizing robust skyrmions with diameters less than a hundred nanometres. Moreover, by manipulating the ferroelectric polarization of the BaTiO3 layer, we achieve local, switchable and nonvolatile control of both skyrmion density and thermodynamic stability. This ferroelectrically tunable skyrmion system can simultaneously enhance the integratability and addressability of skyrmion-based functional devices.
机译:磁性天rm是在拓扑上受保护的旋转自旋纹理。它们的纳米级尺寸,拓扑保护的稳定性和孤子性质,共同为将来的自旋电子学应用带来了希望。为了将这些引人注目的特征转化为实用的自旋电子器件,关键挑战在于如何有效控制天体离子的性质,例如尺寸,密度和热力学稳定性。在这里,我们报告了在超薄BaTiO3 / SrRuO3双层异质结构中发现铁电可调天生离子的发现。 BaTiO3 / SrRuO3异质界面处的铁电邻近效应触发了相当大的Dzyaloshinskii-Moriya相互作用,从而稳定了直径小于100纳米的坚固天生粒子。此外,通过控制BaTiO3层的铁电极化,我们实现了对天空粒子密度和热力学稳定性的局部,可切换和非易失性控制。该铁电可调式天窗离子系统可以同时增强基于天窗离子的功能设备的可集成性和寻址能力。

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