We study Tomonaga-Luttinger liquids thrown out of equilibrium by marginal deformations in the form of interaction modulations. This is modeled by quenching or periodically driving the Luttinger parameter or, equivalently, the compactification radius of the free boson conformal field theory between two different values. We obtain exact analytical results for the evolution of the Loschmidt echo and observables such as the particle and energy densities. Starting from generic initial states, the quench dynamics are shown to exhibit revivals and temporal orthogonalities. For the periodic drive, we show stability or instability of time-evolved physical quantities dependent on the drive parameters. We also compare the corresponding marginally defo...
We consider the low-temperature transport properties of critical one-dimensional systems that can be...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We study the relaxation dynamics of a nonequilibrium Tomonaga-Luttinger model after a sudden interac...
International audienceWe study the quantum quench in two coupled Tomonaga-Luttinger Liquids (TLLs), ...
We study the quantum quench in two coupled Tomonaga-Luttinger Liquids (TLLs), from the off-critical ...
We consider finite-time quantum quenches in the interacting Tomonaga--Luttinger model, for example t...
The study of the non-equilibrium dynamics of many-body systems after a quantum quench received a con...
We present a study of the one-particle spectral properties for a variety of models of Luttinger liq...
We study the effect of a quantum quench between two tunnel coupled Tomonaga-Luttinger liquids (TLLs)...
An overview is given of the limitations of Luttinger liquid theory in describing the real time equil...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
Tomonaga-Luttinger liquids (TLLs) can be used to effectively describe one-dimensional quantum many-b...
The dynamics of the Luttinger model after a quantum quench is studied. We compute in detail one- and...
We consider the low-temperature transport properties of critical one-dimensional systems that can be...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
We study the relaxation dynamics of a nonequilibrium Tomonaga-Luttinger model after a sudden interac...
International audienceWe study the quantum quench in two coupled Tomonaga-Luttinger Liquids (TLLs), ...
We study the quantum quench in two coupled Tomonaga-Luttinger Liquids (TLLs), from the off-critical ...
We consider finite-time quantum quenches in the interacting Tomonaga--Luttinger model, for example t...
The study of the non-equilibrium dynamics of many-body systems after a quantum quench received a con...
We present a study of the one-particle spectral properties for a variety of models of Luttinger liq...
We study the effect of a quantum quench between two tunnel coupled Tomonaga-Luttinger liquids (TLLs)...
An overview is given of the limitations of Luttinger liquid theory in describing the real time equil...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...
Tomonaga-Luttinger liquids (TLLs) can be used to effectively describe one-dimensional quantum many-b...
The dynamics of the Luttinger model after a quantum quench is studied. We compute in detail one- and...
We consider the low-temperature transport properties of critical one-dimensional systems that can be...
15 pages, 13 figuresInternational audienceWe investigate the dynamics of Mott-insulating regions of ...
Using a Luttinger liquid theory we investigate the time evolution of the particle density of a one-d...