We present an efficient methodology to study spin waves in disordered materials. The approach is based on a Heisenberg model and enables calculations of magnon properties in spin systems with disorder of an arbitrary kind and concentration of impurities. Disorder effects are taken into account within two complementary approaches. Magnons in systems with substitutional (uncorrelated) disorder can be efficiently calculated within a single-site coherent potential approximation for the Heisenberg model. From the computation point of view the method is inexpensive and directly applicable to systems like alloys and doped materials. It is shown that it performs exceedingly well across all concentrations and wave vectors. Another way is the direct ...
In this report we present a systematic study of the magnonic modes in the disordered Fe0.5Co0.5 allo...
We present an implementation of the adiabatic spin-wave dynamics of Niu and Kleinman. This technique...
By using an approach based on the Self-Consistent Local Random Phase Approximation (SC-LRPA) we calc...
We study theoretically the influence of temperature and disorder on the spin-wave spectrum of the ma...
A calculation of the spin-wave spectra of a disordered Heisenberg ferromagnet in which two species o...
The effect of disorder on magnonic transport in low-dimensional magnetic materials is studied in the...
Spin dynamics in low dimensional magnetic systems has been of fundamental importance for a long time...
In this report we present a systematic study of the magnonic modes in the disordered Fe0.5Co0.5 allo...
We present a new method to model spin-wave excitations in magnetic solids, based on the Liouville–La...
Spin dynamics in low dimensional magnetic systems has been of fundamental importance for a...
In this thesis we consider two types of magnetic system, the ferromagnet and the antiferromagnet, co...
International audienceWe study the magnetic excitation spectrum in three-dimensional diluted ferroma...
dynamics is discussed in chapter 5 and employed to study spin waves in a domain wall structure. A hy...
Spin waves, also known as magnons, are low-lying collective excitations in magnetic materials, for w...
A Green's function technique is used to calculate the magnetic properties of Heisenberg ferromagnets...
In this report we present a systematic study of the magnonic modes in the disordered Fe0.5Co0.5 allo...
We present an implementation of the adiabatic spin-wave dynamics of Niu and Kleinman. This technique...
By using an approach based on the Self-Consistent Local Random Phase Approximation (SC-LRPA) we calc...
We study theoretically the influence of temperature and disorder on the spin-wave spectrum of the ma...
A calculation of the spin-wave spectra of a disordered Heisenberg ferromagnet in which two species o...
The effect of disorder on magnonic transport in low-dimensional magnetic materials is studied in the...
Spin dynamics in low dimensional magnetic systems has been of fundamental importance for a long time...
In this report we present a systematic study of the magnonic modes in the disordered Fe0.5Co0.5 allo...
We present a new method to model spin-wave excitations in magnetic solids, based on the Liouville–La...
Spin dynamics in low dimensional magnetic systems has been of fundamental importance for a...
In this thesis we consider two types of magnetic system, the ferromagnet and the antiferromagnet, co...
International audienceWe study the magnetic excitation spectrum in three-dimensional diluted ferroma...
dynamics is discussed in chapter 5 and employed to study spin waves in a domain wall structure. A hy...
Spin waves, also known as magnons, are low-lying collective excitations in magnetic materials, for w...
A Green's function technique is used to calculate the magnetic properties of Heisenberg ferromagnets...
In this report we present a systematic study of the magnonic modes in the disordered Fe0.5Co0.5 allo...
We present an implementation of the adiabatic spin-wave dynamics of Niu and Kleinman. This technique...
By using an approach based on the Self-Consistent Local Random Phase Approximation (SC-LRPA) we calc...