There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advocate for using Dingle's singulants as a way to gain analytic control over its large-order behaviour for nonlinear flows. Within our approach, singulants can be viewed as new emergent degrees of freedom which reorganise the large-order gradient expansion. We work out the physics of singulants for longitudinal flows, where they obey simple evolution equations which we compute in M\"uller-Israel-Stewart-like models, holography and kinetic theory. These equations determine the dynamics of the large-order behaviour of the hydrodynamic expansion, which we confirm with explicit numerical calculations. One of our key findings is a duality between sin...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We consider the dispersion relation of the shear-diffusion mode in relativistic hydrodynamics, which...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion isfactorially divergent. We advoc...
A foundational question in relativistic fluid mechanics concerns the properties of the hydrodynamic ...
A foundational question in relativistic fluid mechanics concerns the properties of the hydrodynamic ...
Consistent formulations of relativistic viscous hydrodynamics involve short-lived modes, leading to ...
The gradient expansion is the fundamental organizing principle underlying relativistic hydrodynamics...
The success of relativistic hydrodynamics as an essential part of the phenomenological description o...
The success of relativistic hydrodynamics as an essential part of the phenomenological description o...
The gradient expansion is the fundamental organising principle underlying relativistic hydrodynamics...
The transseries is an ansatz for generating solutions to classical problems which are both perturbat...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We consider the dispersion relation of the shear-diffusion mode in relativistic hydrodynamics, which...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion is factorially divergent. We advo...
There is growing evidence that the hydrodynamic gradient expansion isfactorially divergent. We advoc...
A foundational question in relativistic fluid mechanics concerns the properties of the hydrodynamic ...
A foundational question in relativistic fluid mechanics concerns the properties of the hydrodynamic ...
Consistent formulations of relativistic viscous hydrodynamics involve short-lived modes, leading to ...
The gradient expansion is the fundamental organizing principle underlying relativistic hydrodynamics...
The success of relativistic hydrodynamics as an essential part of the phenomenological description o...
The success of relativistic hydrodynamics as an essential part of the phenomenological description o...
The gradient expansion is the fundamental organising principle underlying relativistic hydrodynamics...
The transseries is an ansatz for generating solutions to classical problems which are both perturbat...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We utilize the fluid-gravity duality to investigate the large order behavior of hydrodynamic gradien...
We consider the dispersion relation of the shear-diffusion mode in relativistic hydrodynamics, which...