Pinning effect and thermal stability study in L10 FePt-pinned spin valves
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2752101
Reference16 articles.
1. High K/sub u/ materials approach to 100 Gbits/in/sup 2/
2. Nanostructure and magnetic properties of highly (001) oriented L10 (Fe49Pt51)1−xCux films
3. Fabrication and microstructure of high coercivity FePt thin films at 400 °C
4. Fabrication and characterization of L1/sub 0/-ordered FePt/AlO/FeCo magnetic tunnel junctions
5. Thermal degradation of spin valve multilayers caused by Mn migration
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1. Field-Free Magnetization Switching Induced by Bulk Spin–Orbit Torque in a (111)-Oriented CoPt Single Layer with In-Plane Remanent Magnetization;ACS Applied Electronic Materials;2022-07-22
2. 2.3.2.2.4 FePt-based heterocomposites: Transport and magnetotransport properties;Nanocrystalline Materials, Part B;2015
3. Effects of annealing on luminescence of CaWO4:Eu3+ nanoparticles and its thermoluminescence study;Journal of Alloys and Compounds;2013-04
4. Pseudo spin valves based on L10 (111)-oriented FePt fixed layers with tilted anisotropy;Applied Physics Letters;2009-04-20
5. Pseudo-spin-valve with L10 (111)-oriented FePt fixed layer;Journal of Applied Physics;2009-04
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