International audienceNanoscale inhomogeneities and impurity clustering are often found to drastically affect the magnetic and transport properties in disordered/diluted systems, giving rise to rich and complex phenomena. However, the physics of these systems still remains to be explored in more detail as can be seen from the scarce literature available. We present a detailed theoretical analysis of the effects of nanoscale inhomogeneities on the spin excitation spectrum in diluted magnetic systems. The calculations are performed on relatively large systems (up to N = ). It is found that even low concentrations of inhomogeneities have drastic effects on both the magnon density of states and magnon excitations. These effects become even more...
Condensed matter physics, and especially strongly correlated systems provide some of the most challe...
We explore the analogy between a new formulation of the problem of local susceptibility in concentra...
In this thesis we consider two types of magnetic system, the ferromagnet and the antiferromagnet, co...
Nanoscale inhomogeneities and impurity clustering are often found to drastically affect the magnetic...
International audienceThe presence of nanoscale inhomogeneities has been experimentally evidenced in...
This thesis is mainly devoted to the study of nanoscale inhomogeneities in diluted and disordered ma...
Cette thèse est principalement consacrée à l'étude des inhomogénéités de taille nanométrique dans le...
International audienceWe study the magnetic excitation spectrum in three-dimensional diluted ferroma...
We present an efficient methodology to study spin waves in disordered materials. The approach is bas...
By using an approach based on the Self-Consistent Local Random Phase Approximation (SC-LRPA) we calc...
The effect of dilution on spin waves in isotropic Heisenberg antiferromagnets is studied. The model ...
International audienceRoom-temperature ferromagnetism has been one of the most sought after topics i...
Inelastic neutron scattering is utilized to directly measure inter-nanoparticle spin waves, or magno...
We study the spin-wave spectra of a dilute ferromagnet within the cluster-Bethe-lattice approximatio...
Ferromagnetic cluster spin wave theory (FCSWT) provides an exact and concise description of the low-...
Condensed matter physics, and especially strongly correlated systems provide some of the most challe...
We explore the analogy between a new formulation of the problem of local susceptibility in concentra...
In this thesis we consider two types of magnetic system, the ferromagnet and the antiferromagnet, co...
Nanoscale inhomogeneities and impurity clustering are often found to drastically affect the magnetic...
International audienceThe presence of nanoscale inhomogeneities has been experimentally evidenced in...
This thesis is mainly devoted to the study of nanoscale inhomogeneities in diluted and disordered ma...
Cette thèse est principalement consacrée à l'étude des inhomogénéités de taille nanométrique dans le...
International audienceWe study the magnetic excitation spectrum in three-dimensional diluted ferroma...
We present an efficient methodology to study spin waves in disordered materials. The approach is bas...
By using an approach based on the Self-Consistent Local Random Phase Approximation (SC-LRPA) we calc...
The effect of dilution on spin waves in isotropic Heisenberg antiferromagnets is studied. The model ...
International audienceRoom-temperature ferromagnetism has been one of the most sought after topics i...
Inelastic neutron scattering is utilized to directly measure inter-nanoparticle spin waves, or magno...
We study the spin-wave spectra of a dilute ferromagnet within the cluster-Bethe-lattice approximatio...
Ferromagnetic cluster spin wave theory (FCSWT) provides an exact and concise description of the low-...
Condensed matter physics, and especially strongly correlated systems provide some of the most challe...
We explore the analogy between a new formulation of the problem of local susceptibility in concentra...
In this thesis we consider two types of magnetic system, the ferromagnet and the antiferromagnet, co...