Anomalous magnetoresistance behavior of CoFe nano-oxide spin valves at low temperatures
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1540149
Reference12 articles.
1. Giant magnetoresistive in soft ferromagnetic multilayers
2. Magnetoresistance enhancement in specular, bottom-pinned, Mn[sub 83]Ir[sub 17] spin valves with nano-oxide layers
3. Enhancement of the giant magnetoresistance in spin valves via oxides formed from magnetic layers
4. Enhancement of MR ratios using thin oxide layers in PtMn and α-Fe2O3-based spin valves
5. Comparative study of magnetoresistance and magnetization in nano-oxide specular and nonspecular MnIr/CoFe/Cu/CoFe spin valves from 10 to 300 K
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1. MgO based specular spin valve with reversible minor loop and higher exchange bias for futuristic linear magnetic field sensor;Journal of Magnetism and Magnetic Materials;2019-09
2. Evolution of magnetoresistance behaviour at low temperatures in naturally oxidised specular spin valve systems;Journal of Magnetism and Magnetic Materials;2019-07
3. Tailoring of magnetic properties of giant magnetoresistance spin valves via insertion of ultrathin non-magnetic spacers between pinned and pinning layers;Scientific Reports;2019-02-07
4. Pinholes and temperature-dependent transport properties of MgO magnetic tunnel junctions;Physical Review B;2008-07-02
5. Training effect in specular spin valves;Physical Review B;2008-05-05
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