Magneto-Ionic Control of Spin Textures and Interfaces

Magneto-Ionic Control of Spin Textures and Interfaces
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DOI:
10.1109/tmrc56419.2022.9918544
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发表时间:
2022-08
期刊:
2022 IEEE 33rd Magnetic Recording Conference (TMRC)
影响因子:
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通讯作者:
G. Chen;C. Ophus;P. Murray;C. J. Jensen;A. Quintana;M. Robertson;E. Burks;D. Gilbert;J. Malloy;D. Bhattacharya;Z. Chen;G. Yin;A. Schmid;Kai Liu
G. Chen;C. Ophus;P. Murray;C. J. Jensen;A. Quintana;M. Robertson;E. Burks;D. Gilbert;J. Malloy;D. Bhattacharya;Z. Chen;G. Yin;A. Schmid;Kai Liu
中科院分区:
其他
文献类型:
--
作者:
G. Chen;C. Ophus;P. Murray;C. J. Jensen;A. Quintana;M. Robertson;E. Burks;D. Gilbert;J. Malloy;D. Bhattacharya;Z. Chen;G. Yin;A. Schmid;Kai Liu

文献摘要

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磁离子学已经显示出解决纳米电子学中的能量挑战的希望,因为材料特性可以通过施加电场通过离子的受控运动来操纵。在这里,我们说明磁离子控制的Dzyaloshinskiii-Moriya相互作用,手性自旋纹理,交换偏置,以及它们在三维信息存储的潜在应用。
Magneto-ionics has shown promise to address the energy challenges in nanoelectronics, as materials properties may be manipulated by the application of an electric field through controlled motion of ions. Here we illustrate magneto-ionic control of Dzyaloshinskii-Moriya interaction, chiral spin textures, exchange bias, and their potential applications in 3-dimensional information storage.