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Tuning magnetic anisotropy in Co-BaZrO3 vertically aligned nanocomposites for memory device integration.


ABSTRACT: Ferromagnetic nanostructures with strong anisotropic properties are highly desired for their potential integration into spintronic devices. Several anisotropic candidates, such as CoFeB and Fe-Pt, have been previously proposed, but many of them have limitations such as patterning issues or thickness restrictions. In this work, Co-BaZrO3 (Co-BZO) vertically aligned nanocomposite (VAN) films with tunable magnetic anisotropy and coercive field strength have been demonstrated to address this need. Such tunable magnetic properties are achieved through tuning the thickness of the Co-BZO VAN structures and the aspect ratio of the Co nanostructures, which can be easily integrated into spintronic devices. As a demonstration, we have integrated the Co-BZO VAN nanostructure into tunnel junction devices, which demonstrated resistive switching alluding to Co-BZO's immense potential for future spintronic devices.

SUBMITTER: Zhang B 

PROVIDER: S-EPMC9417828 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Tuning magnetic anisotropy in Co-BaZrO<sub>3</sub> vertically aligned nanocomposites for memory device integration.

Zhang Bruce B   Huang Jijie J   Jian Jie J   Rutherford Bethany X BX   Li Leigang L   Misra Shikhar S   Sun Xing X   Wang Haiyan H  

Nanoscale advances 20190930 11


Ferromagnetic nanostructures with strong anisotropic properties are highly desired for their potential integration into spintronic devices. Several anisotropic candidates, such as CoFeB and Fe-Pt, have been previously proposed, but many of them have limitations such as patterning issues or thickness restrictions. In this work, Co-BaZrO<sub>3</sub> (Co-BZO) vertically aligned nanocomposite (VAN) films with tunable magnetic anisotropy and coercive field strength have been demonstrated to address t  ...[more]

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