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- W2750291272 abstract "From historical obscurity, antiferromagnets are recently enjoying revived interest, as antiferromagnetic (AFM) materials may allow the continued reduction in size of spintronic devices. They have the benefit of being insensitive to parasitic external magnetic fields, while displaying high read/write speeds, and thus poised to become an integral part of the next generation of logical devices and memory. They are currently employed to preserve the magnetoresistive qualities of some ferromagnetic based giant or tunnel magnetoresistance systems. However, the question remains how the magnetic states of an antiferromagnet can be efficiently manipulated and detected. Here, we reflect on AFM materials for their use in spintronics, in particular, newly recognized antiferromagnet Mn 2 Au with its in-plane anisotropy and tetragonal structure and high Néel temperature. These attributes make it one of the most promising candidates for AFM spintronics thus far with the possibility of architectures freed from the need for ferromagnetic (FM) elements. Here, we discuss its potential for use in ferromagnet-free spintronic devices." @default.
- W2750291272 created "2017-08-31" @default.
- W2750291272 creator A5024302209 @default.
- W2750291272 creator A5087759297 @default.
- W2750291272 date "2017-09-01" @default.
- W2750291272 modified "2023-09-23" @default.
- W2750291272 title "Materials, Devices and Spin Transfer Torque in Antiferromagnetic Spintronics: A Concise Review" @default.
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- W2750291272 doi "https://doi.org/10.1142/s2010324717400148" @default.
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