The low temperature spin dynamics of the geometrically frustrated antiferromagnet Gd 3Ga 5O (12) (GGG) have been investigated using muon spin relaxation. No evidence for static order is seen down to a temperature of 25 mK or a few percent of the Curie-Weiss temperature. Instead there is a linear decrease in the Gd spin fluctuation rate below 1 K which extrapolates to a small but finite value of 2 GHz at zero temperature. In terms of the spin fluctuations the system appears essentially to remain dynamic at low temperatures (T>0.02 K) and magnetic fields up to 1.8 T.NRC publication: N
We study the ground-state and low-energy properties of classical vector spin models with nearest-nei...
International audienceThe static and dynamic magnetic properties of the Nd$_3$Ga$_5$SiO$_{14}$ compo...
The applied magnetic field and temperature phase diagram of the archetypal frustrated magnet, Gd3Ga5...
We report the results of powder neutron scattering measurements on the magnetic correlations in the ...
We present the results of muon-spin-relaxation experiments for two materials which show geometric fr...
We present neutron inelastic-scattering results on the low-temperature magnetic state of the frustra...
We have studied the magnetic properties of the frustrated triangular anti-ferromagnet Gd3Ga5O12 (GGG...
We have studied a classical antiferromagnet on a garnet lattice by means of Monte Carlo simulations ...
International audienceWe present an experimental study of the magnetic structure and dynamics of two...
Neutron diffraction from a powder sample of Gd3Ga5O12 (GGG) has been measured. Due to the severe deg...
The robustness of spin liquids with respect to small perturbations, and the way magnetic frustration...
The magnetic behaviour of gadolinium gallium garnet in an external magnetic field at zero temperature...
In gadolinium gallium garnet (GGG) there is no long-range magnetic order down to 25 mK even though t...
5 pages, 2 figuresFrom muon spin relaxation spectroscopy experiments, we show that the sharp peak (l...
The geometrically frustrated triangular antiferromagnet Gadolinium Gallium Garnet (Gd_3Ga_5O_(12) or...
We study the ground-state and low-energy properties of classical vector spin models with nearest-nei...
International audienceThe static and dynamic magnetic properties of the Nd$_3$Ga$_5$SiO$_{14}$ compo...
The applied magnetic field and temperature phase diagram of the archetypal frustrated magnet, Gd3Ga5...
We report the results of powder neutron scattering measurements on the magnetic correlations in the ...
We present the results of muon-spin-relaxation experiments for two materials which show geometric fr...
We present neutron inelastic-scattering results on the low-temperature magnetic state of the frustra...
We have studied the magnetic properties of the frustrated triangular anti-ferromagnet Gd3Ga5O12 (GGG...
We have studied a classical antiferromagnet on a garnet lattice by means of Monte Carlo simulations ...
International audienceWe present an experimental study of the magnetic structure and dynamics of two...
Neutron diffraction from a powder sample of Gd3Ga5O12 (GGG) has been measured. Due to the severe deg...
The robustness of spin liquids with respect to small perturbations, and the way magnetic frustration...
The magnetic behaviour of gadolinium gallium garnet in an external magnetic field at zero temperature...
In gadolinium gallium garnet (GGG) there is no long-range magnetic order down to 25 mK even though t...
5 pages, 2 figuresFrom muon spin relaxation spectroscopy experiments, we show that the sharp peak (l...
The geometrically frustrated triangular antiferromagnet Gadolinium Gallium Garnet (Gd_3Ga_5O_(12) or...
We study the ground-state and low-energy properties of classical vector spin models with nearest-nei...
International audienceThe static and dynamic magnetic properties of the Nd$_3$Ga$_5$SiO$_{14}$ compo...
The applied magnetic field and temperature phase diagram of the archetypal frustrated magnet, Gd3Ga5...