Site exchange in ultrathin layers of Ni on Cu(100) studied with element-specific layer-by-layer resolution
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.67.153401/fulltext
Reference17 articles.
1. Selected topics in low-energy ion scattering: Surface segregation in Cu/Ni alloys and ion neutralization
2. Magnetism in the few-monolayers limit: A surface magneto-optic Kerr-effect study of the magnetic behavior of ultrathin films of Co, Ni, and Co-Ni alloys on Cu(100) and Cu(111)
3. Calculated spin and orbital moments in the surfaces of the3dmetals Fe, Co, and Ni and their overlayers on Cu(001)
4. Magnetism and anisotropy of ultrathin Ni films on Cu(001)
5. Transitions in the direction of magnetism in Ni/Cu(001) ultrathin films and the effects of capping layers
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1. Investigation of interdiffusion and depth resolution in Cu/Ni multilayers by means of AES depth profiling;Applied Surface Science;2016-02
2. Compositional and structural medium energy ion scattering study of the temperature mediated diffusion determination at the Co/V interface in Co/V/MgO(100);Surface Science;2010-11
3. Two- and three-dimensional band structure of ultrathin Ni on Cu(001);Physical Review B;2009-04-02
4. Layer-resolved elemental-composition determination at the Co/V interface in Co/V/MgO(100);Surface Science;2008-12
5. Coverage Dependence of Growth Mode in Heteroepitaxy of Ni on Cu(100) Surface;Communications in Theoretical Physics;2008-07
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