We calculate the transverse velocity fluctuations correlation function of a linear and homogeneous viscoelastic liquid by using a generalized Langevin equation (GLE) approach. We consider a long-ranged (power-law) viscoelastic memory and a noise with a long-range (power-law) auto-correlation. We first evaluate the transverse velocity fluctuations correlation function for conventional time derivatives C ^ N F ( k → , t ) and then introduce time fractional derivatives in their equations of motion and calculate the corresponding fractional correlation function. We find that the magnitude of the fractional correlation C ^ F ( k → , t ) is always lower than the non-fractional one and decays more rapidly. The...
Fractional calculus descriptions of polymer viscoelasticity are becoming increasingly popular, becau...
This study addresses the stress–strain relaxation functions of solid polymers in the framework of th...
The emergent fluctuating hydrodynamics of a viscoelastic fluid modeled by the multiparticle collisio...
The rheological properties of polymer melts and other complex macromolecular fluids are often succes...
International audienceA simple and rigorous approach to obtain stress correlations in viscoelastic l...
The time correlation function C(t)[equivalent]<x(0)x(t)> of the distance fluctuations of a particle ...
The liquid state of matter, an intermediate phase between gas and solid, is ubiquitous on earth. Due...
In fractional viscoelasticity the stress-strain relation is a differential equation with non-integer...
Viscoelastic materials have frequency dependent storage and loss moduli representing a form of memor...
Abstract: The temporal behavior of the autocorrelation function for the output signal of a fractiona...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
International audienceThe spatiotemporal correlations of the local stress tensor in supercooled liqu...
In this paper, we use ideas from fractional calculus to study the rheological response of soft mater...
Abstract: Fractional calculus descriptions of polymer viscoelasticity are becoming increasingly popu...
We investigate the dynamical phase diagram of the generalized Langevin equation of the free particle...
Fractional calculus descriptions of polymer viscoelasticity are becoming increasingly popular, becau...
This study addresses the stress–strain relaxation functions of solid polymers in the framework of th...
The emergent fluctuating hydrodynamics of a viscoelastic fluid modeled by the multiparticle collisio...
The rheological properties of polymer melts and other complex macromolecular fluids are often succes...
International audienceA simple and rigorous approach to obtain stress correlations in viscoelastic l...
The time correlation function C(t)[equivalent]<x(0)x(t)> of the distance fluctuations of a particle ...
The liquid state of matter, an intermediate phase between gas and solid, is ubiquitous on earth. Due...
In fractional viscoelasticity the stress-strain relation is a differential equation with non-integer...
Viscoelastic materials have frequency dependent storage and loss moduli representing a form of memor...
Abstract: The temporal behavior of the autocorrelation function for the output signal of a fractiona...
In this paper an original method is presented to compute the stochastic response of singledegree- of...
International audienceThe spatiotemporal correlations of the local stress tensor in supercooled liqu...
In this paper, we use ideas from fractional calculus to study the rheological response of soft mater...
Abstract: Fractional calculus descriptions of polymer viscoelasticity are becoming increasingly popu...
We investigate the dynamical phase diagram of the generalized Langevin equation of the free particle...
Fractional calculus descriptions of polymer viscoelasticity are becoming increasingly popular, becau...
This study addresses the stress–strain relaxation functions of solid polymers in the framework of th...
The emergent fluctuating hydrodynamics of a viscoelastic fluid modeled by the multiparticle collisio...