Search for alternative magnetic tunnel junctions based on all-Heusler stacks

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2018Author:
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Rotjanapittayakul, W., Prasongkit, J., Rungger, I., Sanvito, S., Pijitrojana, W. & Archer, T. Search for alternative magnetic tunnel junctions based on all-Heusler stacks, 2018, Physical Review B, 98, 5Download Item:

Abstract:
By imposing the constraints of structural compatibility, stability, and a large tunneling magneto-resistance, we have identified the Fe3Al/BiF3/Fe3Al stack as a possible alternative to the well-established FeCoB/MgO/FeCoB in the search for a novel materials platform for high-performance magnetic tunnel junctions. Various geometries of the Fe3Al/BiF3/Fe3Al structure have been analyzed, demonstrating that a barrier of less than 2 nm yields a tunneling magneto-resistance in excess of 25 000% at low bias, without the need for the electrodes to be half-metallic. Importantly, the presence of a significant spin gap in Fe3Al for states with Δ1 symmetry along the stack direction makes the TMR very resilient to high voltages.
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https://journals.aps.org/prb/abstract/10.1103/PhysRevB.98.054425http://hdl.handle.net/2262/89977
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Science Foundation Ireland
14/IA/2624
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http://people.tcd.ie/sanvitosDescription:
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Author: Sanvito, Stefano; Rotjanapittayakul, Worasak; Prasongkit, Jariyanee; Rungger, Ivan; Pijitrojana, Wanchai; Archer, Thomas
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https://journals.aps.org/prb/abstract/10.1103/PhysRevB.98.054425http://hdl.handle.net/2262/89977
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Physical Review B;98;
5;
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Full text availableKeywords:
Structural compatibility, Spintronics, Heusler alloy, Tunnel junctions, Density functional theoryDOI:
http://dx.doi.org/10.1103/PhysRevB.98.054425Licences: