Influence of crystal structure and oxygen content on exchange-coupling properties of IrMn/CoFe spin-valve films
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.125427
Reference13 articles.
1. Dual-element GMR/inductive heads for gigabits density recording using CoFe spin-valves
2. Spin-valve giant magnetoresistive films with antiferromagnetic Ir-Mn layers
3. NiMn‐pinned spin valves with high pinning field made by ion beam sputtering
4. PtMn single and dual spin valves with synthetic ferrimagnet pinned layers
5. Top, bottom, and dual spin valve recording heads with PdPtMn antiferromagnets
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1. Revealing spin-valve-like and exchange bias effect in Co3Sn1.9In0.1S2 crystal;Applied Physics Letters;2023-01-09
2. Large exchange bias and spin pumping in ultrathin IrMn/Co system for spintronic device applications;Applied Surface Science;2022-06
3. High exchange-bias blocking temperature in an ultrathin amorphous antiferromagnet system;Physical Review B;2021-09-01
4. Temperature-dependent magnetization reversal in exchange bias NiFe/IrMn/NiFe structures;Journal of Magnetism and Magnetic Materials;2019-07
5. Magnetoresistive performances in exchange-biased spin valves and their roles in low-field magnetic sensing applications;Journal of Science: Advanced Materials and Devices;2018-12
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