Abstract: Inspired by a recently conjectured universal bound for thermo-electric diffusion constants in quantum critical, strongly coupled systems and relying on holographic analytical computations, we investigate the possibility of formulating Planckian bounds in different holographic models featuring momentum dissipation. For a certain family of solutions to a simple massive gravity dilaton model at zero charge density we find linear in temperature resistivity and entropy density alongside a constant electric susceptibility. In addition we explicitly find that the sum of the thermo-electric diffusion constants is bounded
We consider black hole spacetimes that are holographically dual to strongly coupled field theories i...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We develop analytic techniques to construct the leading dissipative terms in a derivative expansion ...
Inspired by a recently conjectured universal bound for thermo-electric diffusion constants in quantu...
We investigate the upper bound of charge diffusion constant in holography. For this purpose, we appl...
Abstract: We obtain explicit expressions for the thermoelectric transport coefficients of a strongly...
In this work, we examine how charge is transported in a theory where momentum is relaxed by spatiall...
We derive the leading dissipative corrections of holographic superfluids at finite temperature and c...
We study heat transport in two systems without momentum conservation: a hydrodynamic system, and a h...
We obtain explicit expressions for the thermoelectric transport coefficients of a strongly coupled, ...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
We provide a hydrodynamical description of a holographic theory with broken translation invariance. ...
We consider black hole spacetimes that are holographically dual to strongly coupled field theories i...
We consider holographic theories at finite temperature in which a continuous global symmetry in the ...
We consider black hole spacetimes that are holographically dual to strongly coupled field theories i...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We develop analytic techniques to construct the leading dissipative terms in a derivative expansion ...
Inspired by a recently conjectured universal bound for thermo-electric diffusion constants in quantu...
We investigate the upper bound of charge diffusion constant in holography. For this purpose, we appl...
Abstract: We obtain explicit expressions for the thermoelectric transport coefficients of a strongly...
In this work, we examine how charge is transported in a theory where momentum is relaxed by spatiall...
We derive the leading dissipative corrections of holographic superfluids at finite temperature and c...
We study heat transport in two systems without momentum conservation: a hydrodynamic system, and a h...
We obtain explicit expressions for the thermoelectric transport coefficients of a strongly coupled, ...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
We provide a hydrodynamical description of a holographic theory with broken translation invariance. ...
We consider black hole spacetimes that are holographically dual to strongly coupled field theories i...
We consider holographic theories at finite temperature in which a continuous global symmetry in the ...
We consider black hole spacetimes that are holographically dual to strongly coupled field theories i...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We develop analytic techniques to construct the leading dissipative terms in a derivative expansion ...