Antiferromagnetic materials hold promising prospects in novel types of spintronics applications. Assessing the stability of antiferromagnetic nanostructures against thermal excitations is a crucial aspect of designing devices with a high information density. Here we use theoretical calculations and numerical simulations to determine the mean switching time of antiferromagnetic nanoparticles in the superparamagnetic limit. It is demonstrated that the thermal stability is drastically reduced compared to ferromagnetic particles in the limit of low Gilbert damping, attributed to the exchange enhancement of the attempt frequencies. It is discussed how the system parameters have to be engineered in order to optimize the switching rates in antifer...
Numerical integration of the Landau-Lifshitz-Gilbert equation with thermal fluctuations is used to s...
We study dynamical and thermal effects that are induced in nanoparticle systems by a rotating magnet...
A system of superparamagnetic (SPM) nanoparticles dissipates heat when it is subjected to an alterna...
Antiferromagnetic materials hold promising prospects in novel types of spintronics applications. Ass...
Magnetic materials are now controllable down to a nanometer length scale and, hence, there is a broa...
PACS 75.75.+a – Magnetic properties of nanostructures PACS 75.10.Hk – Classical spin models PACS 75....
A new model that considers the thermal probability of uniform magnetization inversion in magnetic na...
Switching the magnetization of a shape-anisotropic 2-phase multiferroic nanomagnet with voltage-gene...
We present experimental, numerical, and theoretical evidence for an unusual mode of antiferromagneti...
Magnetization reversal in magnetic nanostructures is investigated numerically over time-scales rangi...
As is known, the multi-sublattice structure of antiferromagnets (AFMs) entails that, under size dimi...
Antiferromagnets provide greater stability than their ferromagnetic counterparts, but antiferromagne...
Applications of magnetic memory devices greatly benefit from ultra-fast, low-power switching. Here w...
We study the thermal stability of the periodic (P) and quasiperiodic (Q) precessional modes of the n...
The thermal stability of an array of square exchange bias nanoelements has been investigated as a fu...
Numerical integration of the Landau-Lifshitz-Gilbert equation with thermal fluctuations is used to s...
We study dynamical and thermal effects that are induced in nanoparticle systems by a rotating magnet...
A system of superparamagnetic (SPM) nanoparticles dissipates heat when it is subjected to an alterna...
Antiferromagnetic materials hold promising prospects in novel types of spintronics applications. Ass...
Magnetic materials are now controllable down to a nanometer length scale and, hence, there is a broa...
PACS 75.75.+a – Magnetic properties of nanostructures PACS 75.10.Hk – Classical spin models PACS 75....
A new model that considers the thermal probability of uniform magnetization inversion in magnetic na...
Switching the magnetization of a shape-anisotropic 2-phase multiferroic nanomagnet with voltage-gene...
We present experimental, numerical, and theoretical evidence for an unusual mode of antiferromagneti...
Magnetization reversal in magnetic nanostructures is investigated numerically over time-scales rangi...
As is known, the multi-sublattice structure of antiferromagnets (AFMs) entails that, under size dimi...
Antiferromagnets provide greater stability than their ferromagnetic counterparts, but antiferromagne...
Applications of magnetic memory devices greatly benefit from ultra-fast, low-power switching. Here w...
We study the thermal stability of the periodic (P) and quasiperiodic (Q) precessional modes of the n...
The thermal stability of an array of square exchange bias nanoelements has been investigated as a fu...
Numerical integration of the Landau-Lifshitz-Gilbert equation with thermal fluctuations is used to s...
We study dynamical and thermal effects that are induced in nanoparticle systems by a rotating magnet...
A system of superparamagnetic (SPM) nanoparticles dissipates heat when it is subjected to an alterna...