In this Letter, we uncover a universal relaxation mechanism of pinned density waves, combining gauge-gravity duality and effective field theory techniques. Upon breaking translations spontaneously, new gapless collective modes emerge, the Nambu-Goldstone bosons of broken translations. When translations are also weakly broken (e.g., by disorder or lattice effects), these phonons are pinned with a mass m and damped at a rate ω, which we explicitly compute. This contribution to ω is distinct from that of topological defects. We show that ω≃Gm2Ξ, where G is the shear modulus and Ξ is related to a diffusivity of the purely spontaneous state. This result follows from the smallness of the bulk and shear moduli, as would be the case in a phase with...
International audienceWe describe the collective hydrodynamic motion of an incommensurate charge den...
In contrast to metals with weak disorder, the resistivity of weakly pinned charge density waves (CDW...
In this Colloquium, we review recent progress in the effective description of strongly-correlated ph...
International audienceIn this Letter, we uncover a universal relaxation mechanism of pinned density ...
International audienceIn this Letter, we uncover a universal relaxation mechanism of pinned density ...
We study the dynamics of spontaneous translation symmetry breaking in holographic models in presence...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
International audienceWe describe the collective hydrodynamic motion of an incommensurate charge den...
International audienceWe describe the collective hydrodynamic motion of an incommensurate charge den...
In contrast to metals with weak disorder, the resistivity of weakly pinned charge density waves (CDW...
In this Colloquium, we review recent progress in the effective description of strongly-correlated ph...
International audienceIn this Letter, we uncover a universal relaxation mechanism of pinned density ...
International audienceIn this Letter, we uncover a universal relaxation mechanism of pinned density ...
We study the dynamics of spontaneous translation symmetry breaking in holographic models in presence...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
International audienceIn phases where translations are spontaneously broken, new gapless degrees of ...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
In phases where translations are spontaneously broken, new gapless degrees of freedom appear in the ...
International audienceWe describe the collective hydrodynamic motion of an incommensurate charge den...
International audienceWe describe the collective hydrodynamic motion of an incommensurate charge den...
In contrast to metals with weak disorder, the resistivity of weakly pinned charge density waves (CDW...
In this Colloquium, we review recent progress in the effective description of strongly-correlated ph...