Anisotropies essentially affect magnetism in thin ferromagnetic films of few atomic layers. On the one hand they can stabilize long range order in these systems, on the other hand they strongly influence the orientation of magnetization. The intrinsic causes of anisotropies in these systems are the spin-orbit coupling of the electrons and the long-range magnetic dipole interaction. While the dipole interaction always favors an orientation of magnetization in the plane of the film, spin-orbit coupling can favor different orientations of magnetization on the surface and in the inner layers of the film. This can lead to a competition between anisotropies, which in turn leads to a spin reorientation transition with varying film thickness. This ...
The magnetic properties and overlayer-induced reorientation of magnetization in thin ferromagnetic f...
We introduce a phenomenological theory which gives a consistent method to calculate the distribution...
The strength of perpendicular anisotropy is known to drive the spin reorientation in thin magnetic f...
Anisotropies essentially affect magnetism in thin ferromagnetic films of few atomic layers. On the o...
In this paper the thermodynamics of thin ferromagnetic films are studied in the framework of the cla...
We show results from Monte Carlo simulations of a two-dimensional Heisenberg model for ultrathin fil...
The temperature driven reorientation of the magnetization observed in thin ferromagnetic films and m...
In this work the influence of the reduced translational symmetry on the magnetic properties of thin ...
Journals published by the American Physical Society can be found at http://journals.aps.org/We prese...
The spin wave energy is determined by the competition between uniaxial and cubic anisotropy. We disc...
The dependence of the spin reorientation transition in ultra-thin ferromagnetic films on external ma...
The dependence of the spin reorientation transition in ultra-thin ferromagnetic films on external ma...
Spin-orbit coupling (SOC) reduces the spatial symmetry of ferromagnetic solids. That is, the physica...
The magnetism of the layered materials attracts a great interest in the last years. In this context,...
We examine the T=0 phase diagram of a thin ferromagnetic film with a strong out-of-plane anisotropy ...
The magnetic properties and overlayer-induced reorientation of magnetization in thin ferromagnetic f...
We introduce a phenomenological theory which gives a consistent method to calculate the distribution...
The strength of perpendicular anisotropy is known to drive the spin reorientation in thin magnetic f...
Anisotropies essentially affect magnetism in thin ferromagnetic films of few atomic layers. On the o...
In this paper the thermodynamics of thin ferromagnetic films are studied in the framework of the cla...
We show results from Monte Carlo simulations of a two-dimensional Heisenberg model for ultrathin fil...
The temperature driven reorientation of the magnetization observed in thin ferromagnetic films and m...
In this work the influence of the reduced translational symmetry on the magnetic properties of thin ...
Journals published by the American Physical Society can be found at http://journals.aps.org/We prese...
The spin wave energy is determined by the competition between uniaxial and cubic anisotropy. We disc...
The dependence of the spin reorientation transition in ultra-thin ferromagnetic films on external ma...
The dependence of the spin reorientation transition in ultra-thin ferromagnetic films on external ma...
Spin-orbit coupling (SOC) reduces the spatial symmetry of ferromagnetic solids. That is, the physica...
The magnetism of the layered materials attracts a great interest in the last years. In this context,...
We examine the T=0 phase diagram of a thin ferromagnetic film with a strong out-of-plane anisotropy ...
The magnetic properties and overlayer-induced reorientation of magnetization in thin ferromagnetic f...
We introduce a phenomenological theory which gives a consistent method to calculate the distribution...
The strength of perpendicular anisotropy is known to drive the spin reorientation in thin magnetic f...