In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we introduce explicit sources of symmetry breaking in the form of ionic and antiferromagnetic lattices. For the first time in a holographic model, we demonstrate pinning, in which the translational Goldstone mode is lifted by the introduction of explicit sources of translational symmetry breaking. The numerically computed optical conductivity fits very well to a Drude-Lorentz model with a small residual metallicity, precisely matching analytic formulas for the DC conductivity. We also find an instability of the striped phase in the presence of a large-amplitude ionic lattice.Peer reviewe
Abstract We examine the fermionic response in a holographic model of a low temperature striped phase...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We use holography to compute the conductivity in an inhomogeneous charged scalar background. We work...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
International audienceHolographic models provide unique laboratories to investigate nonlinear physic...
We study the dynamics of spontaneous translation symmetry breaking in holographic models in presence...
Abstract We consider the spontaneous formation of striped structures in a holographic model which po...
We study a strongly interacting, fermionic fluid in the presence of an applied magnetic field using ...
We discuss new types of second order phase transitions in holography by constructing striped black h...
Abstract We examine the fermionic response in a holographic model of a low temperature striped phase...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We use holography to compute the conductivity in an inhomogeneous charged scalar background. We work...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
In a holographic probe-brane model exhibiting a spontaneously spatially modulated ground state, we i...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
Holographic models provide unique laboratories to investigate nonlinear physics of transport in inho...
International audienceHolographic models provide unique laboratories to investigate nonlinear physic...
We study the dynamics of spontaneous translation symmetry breaking in holographic models in presence...
Abstract We consider the spontaneous formation of striped structures in a holographic model which po...
We study a strongly interacting, fermionic fluid in the presence of an applied magnetic field using ...
We discuss new types of second order phase transitions in holography by constructing striped black h...
Abstract We examine the fermionic response in a holographic model of a low temperature striped phase...
We consider transport of heat and charge in holographic lattices which are phases of strongly couple...
We use holography to compute the conductivity in an inhomogeneous charged scalar background. We work...