We study phase transitions in classical spin ice at nonzero magnetization, by introducing a mean-field theory designed to capture the interplay between confinement and topological constraints. The method is applied to a model of spin ice in an applied magnetic field along the [1 0 0] crystallographic direction and yields a phase diagram containing the Coulomb phase as well as a set of magnetization plateaux. We argue that the lobe structure of the phase diagram, strongly reminiscent of the Bose–Hubbard model, is generic to Coulomb spin liquids
14 pages, 14 figures. Réf Journal: Phys. Rev. B 99, 224425 (2019)International audienceWe present t...
Spin ice is a frustrated magnetic system that at low temperatures exhibits a Coulomb phase, a classi...
We generalize the mean-field theory for the spinless Bose-Hubbard model to account for the different...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
Spin ice is a frustrated magnetic system that at low temperatures exhibits a Coulomb phase, a classi...
Certain classical statistical systems with strong local constraints are known to exhibit Coulomb pha...
At low temperatures, a spin ice enters a Coulomb phase—a state with algebraic correlations and topol...
International audienceAt low temperatures, a spin ice enters a Coulomb phase—a state with algebraic ...
International audienceAt low temperatures, a spin ice enters a Coulomb phase—a state with algebraic ...
14 pages, 14 figures. Réf Journal: Phys. Rev. B 99, 224425 (2019)International audienceWe present t...
Spin ice is a frustrated magnetic system that at low temperatures exhibits a Coulomb phase, a classi...
We generalize the mean-field theory for the spinless Bose-Hubbard model to account for the different...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
We study the diffusion-annihilation process which occurs when spin ice is quenched from a high tempe...
Spin ice is a frustrated magnetic system that at low temperatures exhibits a Coulomb phase, a classi...
Certain classical statistical systems with strong local constraints are known to exhibit Coulomb pha...
At low temperatures, a spin ice enters a Coulomb phase—a state with algebraic correlations and topol...
International audienceAt low temperatures, a spin ice enters a Coulomb phase—a state with algebraic ...
International audienceAt low temperatures, a spin ice enters a Coulomb phase—a state with algebraic ...
14 pages, 14 figures. Réf Journal: Phys. Rev. B 99, 224425 (2019)International audienceWe present t...
Spin ice is a frustrated magnetic system that at low temperatures exhibits a Coulomb phase, a classi...
We generalize the mean-field theory for the spinless Bose-Hubbard model to account for the different...