In this work, we study the transport coefficients of strongly coupled condensed matter systems using gauge/gravity duality (holography). We consider examples from the real world and evaluate the conductivities from their gravity duals. Adopting the bottom-up approach of holography, we obtain the frequency response of the conductivity for (1+1)-dimensional systems. We also evaluate the DC conductivities for non-relativistic condensed matter systems with hyperscaling violating geometry
AbstractWe present a semi-analytic method for constructing holographic black holes that interpolate ...
We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter where trans...
Abstract We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter wh...
In this work, we study the transport coefficients of strongly coupled condensed matter systems using...
In this thesis we consider various applications the gauge/gravity duality to study transport in stro...
Momentum relaxation is an ever-present and unavoidable ingredient of any realistic condensed matter ...
This dissertation provides an overview of what gauge-gravity duality, often called holography, has t...
In this thesis, classes of strongly interacting quantum field theories, have been stud...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
We present a semi-analytic method for constructing holographic black holes that interpolate from ant...
The gauge/gravity duality links the fields of string theory and quantum field theory. The duality st...
We explain how to compute the conductivity of strongly interacting quantum field theories which have...
We propose a lower bound of the dc electrical conductivity in strongly disordered, strongly interact...
Condensed matter theory is the study of systems at finite density. In this thesis we will attempt to...
This thesis examines magnetotransport in holographic models that describe gravity coupled to a non-l...
AbstractWe present a semi-analytic method for constructing holographic black holes that interpolate ...
We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter where trans...
Abstract We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter wh...
In this work, we study the transport coefficients of strongly coupled condensed matter systems using...
In this thesis we consider various applications the gauge/gravity duality to study transport in stro...
Momentum relaxation is an ever-present and unavoidable ingredient of any realistic condensed matter ...
This dissertation provides an overview of what gauge-gravity duality, often called holography, has t...
In this thesis, classes of strongly interacting quantum field theories, have been stud...
This article opens with a pedagogical discussion of holography aimed at calculating the thermodynami...
We present a semi-analytic method for constructing holographic black holes that interpolate from ant...
The gauge/gravity duality links the fields of string theory and quantum field theory. The duality st...
We explain how to compute the conductivity of strongly interacting quantum field theories which have...
We propose a lower bound of the dc electrical conductivity in strongly disordered, strongly interact...
Condensed matter theory is the study of systems at finite density. In this thesis we will attempt to...
This thesis examines magnetotransport in holographic models that describe gravity coupled to a non-l...
AbstractWe present a semi-analytic method for constructing holographic black holes that interpolate ...
We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter where trans...
Abstract We employ hydrodynamics and gauge/gravity to study magneto-transport in phases of matter wh...