Layer-dependent magnetic-moment distribution in an epitaxial double spin valve structure: Si(001)/Cu/FeNi/Cu/Co/Cu/FeNi/Cu
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.60.7304/fulltext
Reference9 articles.
1. Polarized neutron reflection as a probe of magnetic films and multilayers
2. Spin-polarised neutron reflection studies of epitaxial films
3. Polarised neutron reflection as a probe of in-plane magnetisation vector rotation in magnetic multilayers
4. Application of Green’s-function technique to the calculation of multiphoton absorption coefficients of crystalline solids
5. Magneto-transport phenomena of multilayered films with two magnetic components
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1. Enhancement of the magnetic interfacial exchange energy at a specific interface in NiFe/CoO/Co trilayer thin films via ion-beam modification;Journal of Applied Physics;2014-02-21
2. Dependence of giant magnetoresistance on the thicknesses of magnetic and nonmagnetic layers in dual spin valves;phys. stat. sol. (a);2004-10
3. DEPENDENCE OF GIANT MAGNETORESISTANCE ON THE THICKNESS OF MAGNETIC AND NON-MAGNETIC LAYERS IN DUAL SPIN VALVES;Modern Physics Letters B;2004-04-10
4. Layer selective determination of magnetization vector configurations in an epitaxial double spin valve structure: Si(001)/Cu/Co/Cu/FeNi/Cu/Co/Cu;Applied Physics Letters;2000-08-07
5. Dynamic hysteresis behavior in epitaxial spin-valve structures;Journal of Applied Physics;2000-05
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