By the hydrodynamic linear response theory, dynamical correlation functions decay as power laws along certain velocities, determined by the flux Jacobian. Such correlations are obtained by hydrodynamic projections, and physically, they are due to propagating "sound waves" or generalisation thereof, transporting conserved quantities between the observables. However, some observables do not emit sound waves, such as order parameters associated to symmetry breaking. In these cases correlation functions decay exponentially everywhere, a behaviour not captured by the hydrodynamic linear response theory. Focussing on spin-spin correlation functions in the XX quantum chain, we first review how hydrodynamic linear response works, emphasising that t...
We derive the hydrodynamics for a system ofNactive, spherical, underdamped particles,interacting thr...
The molecular dynamics computer simulation discovery of the slow decay of the velocity autocorrelati...
We study a homogeneously driven granular fluid of hard spheres at intermediate volume fractions and ...
Open AccessRecent work has developed a nonlinear hydrodynamic fluctuation theory for a chain of coup...
We review the recent advances on exact results for dynamical correlation functions at large scales a...
Recent studies of out-of-time ordered thermal correlation functions (OTOC) in holographic systems an...
In small colliding systems and near the QCD critical point, the effects due to hydrodynamic fluctuat...
One of the outstanding problems in the holographic approach to many-body physics is the computation ...
We derive equations of motion of hydrodynamic fluctuations performing perturbative expansion of the ...
Formalism to calculate the hydrodynamic fluctuations by applying the Onsager theory to the relativis...
We investigate long-range correlations (LRCs) induced by shear flow using the molecular dynamics (MD...
The success of spectroscopy to characterise equilibrium fluids, for example the heat capacity ratio,...
Computer simulations of a colloidal particle suspended in a fluid confined by rigid walls show that,...
We consider a quantum Langevin kinetic equation for a system of fermions. We first derive the Langev...
This thesis is a collection of three exact results on correlation and response functions in integrab...
We derive the hydrodynamics for a system ofNactive, spherical, underdamped particles,interacting thr...
The molecular dynamics computer simulation discovery of the slow decay of the velocity autocorrelati...
We study a homogeneously driven granular fluid of hard spheres at intermediate volume fractions and ...
Open AccessRecent work has developed a nonlinear hydrodynamic fluctuation theory for a chain of coup...
We review the recent advances on exact results for dynamical correlation functions at large scales a...
Recent studies of out-of-time ordered thermal correlation functions (OTOC) in holographic systems an...
In small colliding systems and near the QCD critical point, the effects due to hydrodynamic fluctuat...
One of the outstanding problems in the holographic approach to many-body physics is the computation ...
We derive equations of motion of hydrodynamic fluctuations performing perturbative expansion of the ...
Formalism to calculate the hydrodynamic fluctuations by applying the Onsager theory to the relativis...
We investigate long-range correlations (LRCs) induced by shear flow using the molecular dynamics (MD...
The success of spectroscopy to characterise equilibrium fluids, for example the heat capacity ratio,...
Computer simulations of a colloidal particle suspended in a fluid confined by rigid walls show that,...
We consider a quantum Langevin kinetic equation for a system of fermions. We first derive the Langev...
This thesis is a collection of three exact results on correlation and response functions in integrab...
We derive the hydrodynamics for a system ofNactive, spherical, underdamped particles,interacting thr...
The molecular dynamics computer simulation discovery of the slow decay of the velocity autocorrelati...
We study a homogeneously driven granular fluid of hard spheres at intermediate volume fractions and ...