We present an investigation into the intrinsic magnetic properties of the compounds YCo5 and GdCo5, members of the RETM5 class of permanent magnets (RE = rare earth, TM = transition metal). Focusing on Y and Gd provides direct insight into both the TM magnetization and RE-TM interactions without the complication of strong crystal field effects. We synthesize single crystals of YCo5 and GdCo5 using the optical floating zone technique and measure the magnetization from liquid helium temperatures up to 800 K. These measurements are interpreted through calculations based on a Green's function formulation of density-functional theory, treating the thermal disorder of the local magnetic moments within the coherent potential approximation. The ris...
In this thesis we investigate the magnetism of a selection of crystalline mate- rials that display f...
We present calculations and experimental measurements of the temperature-dependent magnetization of ...
This work shows an unconventional route for spin-driven ferroelectricity originating from a metastab...
We present an investigation into the intrinsic magnetic properties of the compounds YCo5 and GdCo5, ...
Atomic-scale computational modeling of technologically relevant permanent magnetic materials faces t...
Atomic-scale computational modeling of technologically relevant permanent magnetic materials faces t...
Atomic-scale computational modeling of technologically-relevant permanent magnetic materials faces t...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
It is investigated how electron-electron correlations affect the intrinsic properties of rare-earth ...
GdCo5 may be considered as two sublattices - one of Gd and one of Co - whose magnetizations are in a...
The magnetic properties of RCo5Ga7 (R = Y, Tb, Dy, Ho and Er) compounds which crystallize in the ScF...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
We have systematically synthesized polycrystalline samples of Nd_(0.9)A_(0.1)CrTiO_5 (A = Pr, Nd, Gd...
We present calculations and experimental measurements of the temperature-dependent magnetization of ...
In this thesis we investigate the magnetism of a selection of crystalline mate- rials that display f...
We present calculations and experimental measurements of the temperature-dependent magnetization of ...
This work shows an unconventional route for spin-driven ferroelectricity originating from a metastab...
We present an investigation into the intrinsic magnetic properties of the compounds YCo5 and GdCo5, ...
Atomic-scale computational modeling of technologically relevant permanent magnetic materials faces t...
Atomic-scale computational modeling of technologically relevant permanent magnetic materials faces t...
Atomic-scale computational modeling of technologically-relevant permanent magnetic materials faces t...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
It is investigated how electron-electron correlations affect the intrinsic properties of rare-earth ...
GdCo5 may be considered as two sublattices - one of Gd and one of Co - whose magnetizations are in a...
The magnetic properties of RCo5Ga7 (R = Y, Tb, Dy, Ho and Er) compounds which crystallize in the ScF...
Computational design of more efficient rare earth/transition metal (RE-TM) permanent magnets require...
We have systematically synthesized polycrystalline samples of Nd_(0.9)A_(0.1)CrTiO_5 (A = Pr, Nd, Gd...
We present calculations and experimental measurements of the temperature-dependent magnetization of ...
In this thesis we investigate the magnetism of a selection of crystalline mate- rials that display f...
We present calculations and experimental measurements of the temperature-dependent magnetization of ...
This work shows an unconventional route for spin-driven ferroelectricity originating from a metastab...