Thermal noise properties of two aging materials
arXiv:cond-mat/0501324 · doi:10.1007/3-540-33204-9_3
Abstract
In this lecture we review several aspects of the thermal noise properties in two aging materials: a polymer and a colloidal glass. The measurements have been performed after a quench for the polymer and during the transition from a fluid-like to a solid-like state for the gel. Two kind of noise has been measured: the electrical noise and the mechanical noise. For both materials we have observed that the electric noise is characterized by a strong intermittency, which induces a large violation of the Fluctuation Dissipation Theorem (FDT) during the aging time, and may persist for several hours at low frequency. The statistics of these intermittent signals and their dependance on the quench speed for the polymer or on sample concentration for the gel are studied. The results are in a qualitative agreement with recent models of aging, that predict an intermittent dynamics. For the mechanical noise the results are unclear. In the polymer the mechanical thermal noise is still intermittent whereas for the gel the violation of FDT, if it exists, is extremely small.
to be published in the Proceedings of the XIX Sitges Conference on ''Jammming, Yielding and Irreversible Deformation in Condensed Matter'', M.-C.Miguel and M. Rubi eds.,Springer Verlag, Berlin
References in corpus (13)
- Fluctuation-dissipation ratio of a spin glass in the aging regime
- Probing an nonequilibrium Einstein relation in an aging colloidal glass
- Kovacs effects in an aging molecular liquid
- Intermittency in aging
- Experimental study of the Fluctuation-Dissipation-Relation during an aging process
- Intermittency of glassy relaxation and the emergence of a non-equilibrium spontaneous measure in the aging regime
- Intermittent origin of the large violations of the fluctuation dissipation relations in an aging polymer glass
- Log-Poisson statistics and full aging in glassy systems
- The Kovacs effect in model glasses
- Advanced memory effects in the aging of a polymer glass
- Origin of the Violation of the Fluctuation-Dissipation Theorem in Systems with Activated Dynamics
- Off equilibrium fluctuations in a polymer glass
- Electrical noise properties in aging materials