CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without Ru(0001) underlayer at 300 °C by radio-frequency magnetron sputtering. CoPt films with the close-packed plane parallel to the substrate surface grow epitaxially on the Ru underlayer as well as on the MgO substrate. Flat surfaces with the arithmetical mean roughness value of 0.2 nm are realized for both films. The crystal structure is determined by considering the atomic stacking sequence of close-packed plane and the order degree. The film formed on MgO substrate consists of an fcc-based L11 ordered crystal, whereas the film grown on Ru underlayer involves an hcp-based Bh ordered crystal in addition to the L11 ordered crystal. The order degrees of films...
Magnetic thin films are expected to be a promising substitute for existing semiconductor materials i...
Conventional x-ray diffraction patterns were recorded and used for peak identification and phase det...
Over the last few years, the Co/Pt nano-multilayered films have been extensively studied. Owing to t...
CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without Ru(0001) un...
Abstract. CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without R...
CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without Ru(0001) un...
A CoPt/MgO/CoPt tri-layer film is prepared on an Ru(0001) single-crystal underlayer at 300 °C by ult...
Metastable L11 ordered CoPt(111) epitaxial thin films with the order degrees around 0.3 are formed o...
L11-CoPt(1 1 1) films were successfully fabricated on glass substrates at 300-400 °C, using Pt(1 1 1...
We are interested in studying thin layers of CoPt alloy prepared by co-deposition sputtering. The Co...
[[abstract]]By molecular beam epitaxy CoPt1.1 alloys were simultaneously prepared on Mo seeding laye...
The preparation of Co-based alloy thin films by Molecular Beam Epitaxy (MBE) gives rise to a new cla...
CoPt alloy films have been preapred by RF sputtering. Film thickness is 100nm and saturation magneti...
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared ...
We have studied the kinetic processes of the epitaxial growth for CoPt alloy films using the master ...
Magnetic thin films are expected to be a promising substitute for existing semiconductor materials i...
Conventional x-ray diffraction patterns were recorded and used for peak identification and phase det...
Over the last few years, the Co/Pt nano-multilayered films have been extensively studied. Owing to t...
CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without Ru(0001) un...
Abstract. CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without R...
CoPt alloy films of 40 nm thickness are prepared on MgO(111) substrates with and without Ru(0001) un...
A CoPt/MgO/CoPt tri-layer film is prepared on an Ru(0001) single-crystal underlayer at 300 °C by ult...
Metastable L11 ordered CoPt(111) epitaxial thin films with the order degrees around 0.3 are formed o...
L11-CoPt(1 1 1) films were successfully fabricated on glass substrates at 300-400 °C, using Pt(1 1 1...
We are interested in studying thin layers of CoPt alloy prepared by co-deposition sputtering. The Co...
[[abstract]]By molecular beam epitaxy CoPt1.1 alloys were simultaneously prepared on Mo seeding laye...
The preparation of Co-based alloy thin films by Molecular Beam Epitaxy (MBE) gives rise to a new cla...
CoPt alloy films have been preapred by RF sputtering. Film thickness is 100nm and saturation magneti...
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared ...
We have studied the kinetic processes of the epitaxial growth for CoPt alloy films using the master ...
Magnetic thin films are expected to be a promising substitute for existing semiconductor materials i...
Conventional x-ray diffraction patterns were recorded and used for peak identification and phase det...
Over the last few years, the Co/Pt nano-multilayered films have been extensively studied. Owing to t...