Thermal exchange bias field drifts after 10 keV He ion bombardment: Storage temperature dependence and initial number of coupling sites
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3665198
Reference22 articles.
1. S. S. P. Parkin,Annual Review of Materials Science, edited by B. W. Wessels (Annual Reviews Inc., Palo Alto, CA, 1995), Vol. 25, pp. 357–388.
2. Ion irradiation of exchange bias systems for magnetic sensor applications
3. Thermally activated self-alignment of exchange coupling in NiO/NiFe bilayers
4. NiO structure–exchange anisotropy relation in the Ni81Fe19/NiO films and thermal stability of its NiO film
5. Thermal fluctuation aftereffect of exchange coupled films for spin valve devices
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1. X-ray photoelectron spectroscopy study of an exchange bias system on the basis of Co70Fe30/Mn83Ir17interface;Journal of Applied Physics;2018-10-21
2. Preferential weakening of rotational magnetic anisotropy by keV-He ion bombardment in polycrystalline exchange bias layer systems;New Journal of Physics;2018-05-04
3. Artificial sub-μm magnetic patterning by He+ ion bombardment through a mask fabricated by Ultraviolet NanoImprint Lithography (UV-NIL);Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2014-03
4. Symmetric magnetization reversal in polycrystalline exchange coupled systems via simultaneous processes of coherent rotation and domain nucleation;Physical Review B;2012-09-14
5. Plasma ion source for in situ ion bombardment in a soft x-ray magnetic scattering diffractometer;Review of Scientific Instruments;2012-05
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