We provide a hydrodynamical description of a holographic theory with broken translation invariance. We use the fluid/gravity correspondence to systematically obtain both the constitutive relations for the currents and the Ward identity for momentum relaxation in a derivative expansion. Beyond leading order in the strength of momentum relaxation, our results differ from a model previously proposed by Hartnoll et al. As an application of these techniques we consider charge and heat transport in the boundary theory. We derive the low frequency thermoelectric transport coefficients of the holographic theory from the linearised hydrodynamics
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model con...
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model co...
Motivated by recent progress in developing action formulations of relativistic hydrodynamics, we use...
The DC thermoelectric conductivities of holographic systems in which translational symmetry is broke...
We obtain explicit expressions for the thermoelectric transport coefficients of a strongly coupled, ...
Abstract: We obtain explicit expressions for the thermoelectric transport coefficients of a strongly...
In this note we study the effects of a magnetic field on transport using holographic models with bro...
In this note we study the effects of a magnetic field on transport using holographic models with bro...
Condensed matter theory is the study of systems at finite density. In this thesis we will attempt to...
Abstract: Inspired by a recently conjectured universal bound for thermo-electric diffusion constants...
Inspired by a recently conjectured universal bound for thermo-electric diffusion constants in quantu...
Hydrodynamics is an effective theory that is extremely successful in describing a wide range of phys...
We study heat transport in two systems without momentum conservation: a hydrodynamic system, and a h...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
Momentum relaxation is an ever-present and unavoidable ingredient of any realistic condensed matter ...
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model con...
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model co...
Motivated by recent progress in developing action formulations of relativistic hydrodynamics, we use...
The DC thermoelectric conductivities of holographic systems in which translational symmetry is broke...
We obtain explicit expressions for the thermoelectric transport coefficients of a strongly coupled, ...
Abstract: We obtain explicit expressions for the thermoelectric transport coefficients of a strongly...
In this note we study the effects of a magnetic field on transport using holographic models with bro...
In this note we study the effects of a magnetic field on transport using holographic models with bro...
Condensed matter theory is the study of systems at finite density. In this thesis we will attempt to...
Abstract: Inspired by a recently conjectured universal bound for thermo-electric diffusion constants...
Inspired by a recently conjectured universal bound for thermo-electric diffusion constants in quantu...
Hydrodynamics is an effective theory that is extremely successful in describing a wide range of phys...
We study heat transport in two systems without momentum conservation: a hydrodynamic system, and a h...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
Momentum relaxation is an ever-present and unavoidable ingredient of any realistic condensed matter ...
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model con...
We study the equilibrium and near-equilibrium properties of a holographic five-dimensional model co...
Motivated by recent progress in developing action formulations of relativistic hydrodynamics, we use...