The micromagnetic exchange stiffness is a critical parameter in numerical modeling of magnetization dynamics and reversal processes, yet the current literature reports a wide range of values even for such simple and widely used material as cobalt. Using the ab initio estimated Heisenberg parameters we calculate the low temperature micromagnetic exchange stiffness for hexagonal-close-packed (hcp) and face-centered-cubic cobalt. For hcp Co they are slightly different in the directions parallel and perpendicular to the c axis. We establish the exchange stiffness scaling relation with magnetization A(m)∼m1.8 valid for a wide range of temperatures. For hcp Co we find an anisotropic domain wall width in the range 24-29 nm which increases with tem...
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
The exchange bias coupling at ferro-/antiferromagnetic interfaces of epitaxially grown Co/CoO bilaye...
To complement recent experimental findings [Vetter et al., APL Mater. 4, 096103 (2016)] on strong ex...
The micromagnetic exchange stiffness is a critical parameter in numerical modeling of magnetization ...
For finite-temperature micromagnetic simulations the knowledge of the temperature dependence of the ...
The exchange stiffness, Aex, is one of the key parameters controlling magnetization reversal in magn...
The stripe model of domain structure in multilayers is studied by micromagnetic simulation. The resu...
Using the spin-spiral formulation of the tight-binding linear muffin-tin orbital method, the princip...
A one-dimensional micromagnetic model is used to calculate the thermal dependence of microcoercivity...
An investigation of the orientation and temperature dependence of domain wall properties in FePt is ...
Ferromagnetic nanocomposites, or ''exchange spring'' magnets, possess a nanoscaled microstructure th...
Monte Carlo algorithms are frequently used in atomistic simulations, including for computation of ma...
The magnetic properties of a one-dimensional (1D) monatomic chain of Co reported in a previous exper...
The exchange bias effect and training effect of the Co/CoO film with induced uniaxial anisotropy wer...
Magnetism plays an important role in today’s technology and has a very broad range of applications....
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
The exchange bias coupling at ferro-/antiferromagnetic interfaces of epitaxially grown Co/CoO bilaye...
To complement recent experimental findings [Vetter et al., APL Mater. 4, 096103 (2016)] on strong ex...
The micromagnetic exchange stiffness is a critical parameter in numerical modeling of magnetization ...
For finite-temperature micromagnetic simulations the knowledge of the temperature dependence of the ...
The exchange stiffness, Aex, is one of the key parameters controlling magnetization reversal in magn...
The stripe model of domain structure in multilayers is studied by micromagnetic simulation. The resu...
Using the spin-spiral formulation of the tight-binding linear muffin-tin orbital method, the princip...
A one-dimensional micromagnetic model is used to calculate the thermal dependence of microcoercivity...
An investigation of the orientation and temperature dependence of domain wall properties in FePt is ...
Ferromagnetic nanocomposites, or ''exchange spring'' magnets, possess a nanoscaled microstructure th...
Monte Carlo algorithms are frequently used in atomistic simulations, including for computation of ma...
The magnetic properties of a one-dimensional (1D) monatomic chain of Co reported in a previous exper...
The exchange bias effect and training effect of the Co/CoO film with induced uniaxial anisotropy wer...
Magnetism plays an important role in today’s technology and has a very broad range of applications....
Permanent magnets with high coercivity Hc and maximum energy product (BH)max are indispensible for t...
The exchange bias coupling at ferro-/antiferromagnetic interfaces of epitaxially grown Co/CoO bilaye...
To complement recent experimental findings [Vetter et al., APL Mater. 4, 096103 (2016)] on strong ex...