International audienceIn this paper we investigate the superspin glass behavior of a concentrated assembly of interacting maghemite nanoparticles and compare it to that of canonical atomic spin glass systems. ac versus temperature and frequency measurements show evidence of a superspin glass transition taking place at low temperature. In order to fully characterize the superspin glass phase, the aging behavior of both the thermo-remanent magnetization (TRM) and ac susceptibility has been investigated. It is shown that the scaling laws obeyed by superspin glasses and atomic spin glasses are essentially the same, after subtraction of a superparamagnetic contribution from the superspin glass response functions. Finally, we discuss a possible o...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
International audienceInteracting magnetic nanoparticles display a wide variety of magnetic behavior...
International audienceIn this paper we investigate the superspin glass behavior of a concentrated as...
International audienceIn this paper we investigate the superspin glass behavior of a concentrated as...
This article discusses the magnetic super-phase, which occurs in strongly interacting magnetic nanop...
We here confirm the occurrence of spin glass phase transition and extract estimates of associated cr...
Dense arrays of magnetic nanoparticles contain the physical ingredients that are usually met in conv...
Magnetic nanoparticle assemblies in high concentrations can exhibit spin glass like properties in th...
Magnetic nanoparticle assemblies in high concentrations can exhibit spin glass like properties in th...
The non-equilibrium dynamics of the superspin glass state of a dense assembly of similar to 2 nm MnF...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
International audienceInteracting magnetic nanoparticles display a wide variety of magnetic behavior...
International audienceIn this paper we investigate the superspin glass behavior of a concentrated as...
International audienceIn this paper we investigate the superspin glass behavior of a concentrated as...
This article discusses the magnetic super-phase, which occurs in strongly interacting magnetic nanop...
We here confirm the occurrence of spin glass phase transition and extract estimates of associated cr...
Dense arrays of magnetic nanoparticles contain the physical ingredients that are usually met in conv...
Magnetic nanoparticle assemblies in high concentrations can exhibit spin glass like properties in th...
Magnetic nanoparticle assemblies in high concentrations can exhibit spin glass like properties in th...
The non-equilibrium dynamics of the superspin glass state of a dense assembly of similar to 2 nm MnF...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
This thesis presents experimental results on strongly interacting γ-Fe2O3 magnetic nanoparticles and...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
International audienceInteracting magnetic nanoparticles display a wide variety of magnetic behavior...