[[abstract]]This study reports the preparation of self-organized 1-dimensional magnetic structures of Fe on Al2O3 (0001) by oblique deposition. The x-ray diffraction(XRD) results in this study show the preferred (110) texture of the Fe films.XRD and extended x-ray adsorption fine structure measurements indicate larger oblique deposition angle (65°) leads to more disorder in the Fe crystalline structure. After capping with a Pd overlayer, the Pd/Fe/Al2O3 (0001) still exhibits uniaxial magnetic anisotropy induced by the underlying 1-dimensional Fe nanostructure. This uniaxial magnetic anisotropy changes with the variation in Fe thickness and oblique deposition angle. These results clearly indicate the feasibility of manipulating uniaxial magn...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We report on a combined experimental and theoretical investigation of the magnetic anisotropy of Fe ...
We have studied the magnetic properties of Au (2 nm)/Co50Pt50 (3 nm)/Au (2 nm) multilayer films prep...
Copyright © 1996 American Institute of Physics.We have studied the evolution of the magnetic in‐pla...
Co/Fe multilayers were electron-beam evaporated in ultrahigh vacuum onto quartz substrates keeping t...
The magnetic anisotropy of monatomic Fe films on Pd(001) with or without a Pd overlayer was investig...
The epsilon Fe2O3 phase of iron oxide has been studied to understand the spin structure and the magn...
Perpendicular magnetic anisotropy (PMA) is an essential condition for CoFe thin films used in magnet...
The epsilon Fe2O3 phase of iron oxide has been studied to understand the spin structure and the magn...
This contribution reports on the Perpendicular Magnetic Anisotropy (PMA) of a thin film stack of the...
It is predicted that magnetic anisotropy of a thin magnetic film may be affected by the polarization...
We report on domain formation and magnetization reversal in epitaxial Fe films on ferroelectric BaTi...
Fe(110) films were epitaxially grown on sapphire substrates using a Mo(110) buffer layer in an ultra...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We find that the use of V(100) buffer layers on MgO(001) substrates for the epitaxy of FePd binary a...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We report on a combined experimental and theoretical investigation of the magnetic anisotropy of Fe ...
We have studied the magnetic properties of Au (2 nm)/Co50Pt50 (3 nm)/Au (2 nm) multilayer films prep...
Copyright © 1996 American Institute of Physics.We have studied the evolution of the magnetic in‐pla...
Co/Fe multilayers were electron-beam evaporated in ultrahigh vacuum onto quartz substrates keeping t...
The magnetic anisotropy of monatomic Fe films on Pd(001) with or without a Pd overlayer was investig...
The epsilon Fe2O3 phase of iron oxide has been studied to understand the spin structure and the magn...
Perpendicular magnetic anisotropy (PMA) is an essential condition for CoFe thin films used in magnet...
The epsilon Fe2O3 phase of iron oxide has been studied to understand the spin structure and the magn...
This contribution reports on the Perpendicular Magnetic Anisotropy (PMA) of a thin film stack of the...
It is predicted that magnetic anisotropy of a thin magnetic film may be affected by the polarization...
We report on domain formation and magnetization reversal in epitaxial Fe films on ferroelectric BaTi...
Fe(110) films were epitaxially grown on sapphire substrates using a Mo(110) buffer layer in an ultra...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We find that the use of V(100) buffer layers on MgO(001) substrates for the epitaxy of FePd binary a...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We report on a combined experimental and theoretical investigation of the magnetic anisotropy of Fe ...
We have studied the magnetic properties of Au (2 nm)/Co50Pt50 (3 nm)/Au (2 nm) multilayer films prep...