Soft random solids and their heterogeneous elasticity
arXiv:0812.3935 · doi:10.1103/PhysRevE.80.031140
Abstract
Spatial heterogeneity in the elastic properties of soft random solids is examined via vulcanization theory. The spatial heterogeneity in the \emph{structure} of soft random solids is a result of the fluctuations locked-in at their synthesis, which also brings heterogeneity in their \emph{elastic properties}. Vulcanization theory studies semi-microscopic models of random-solid-forming systems, and applies replica field theory to deal with their quenched disorder and thermal fluctuations. The elastic deformations of soft random solids are argued to be described by the Goldstone sector of fluctuations contained in vulcanization theory, associated with a subtle form of spontaneous symmetry breaking that is associated with the liquid-to-random-solid transition. The resulting free energy of this Goldstone sector can be reinterpreted as arising from a phenomenological description of an elastic medium with quenched disorder. Through this comparison, we arrive at the statistics of the quenched disorder of the elasticity of soft random solids, in terms of residual stress and Lamé-coefficient fields. In particular, there are large residual stresses in the equilibrium reference state, and the disorder correlators involving the residual stress are found to be long-ranged and governed by a universal parameter that also gives the mean shear modulus.
40 pages, 7 figures
References in corpus (14)
- Deformation of crosslinked semiflexible polymer networks
- Nonaffine Correlations in Random Elastic Media
- Nonaffine rubber elasticity for stiff polymer networks
- Vibrations of amorphous, nanometric structures: When does continuum theory apply?
- Symmetries and Elasticity of Nematic Gels
- Experimental Measures of Affine and Non-affine Deformation in Granular Shear
- Thermal Fluctuations and Rubber Elasticity
- Elasticity of highly cross-linked random networks
- Scaling of Entropic Shear Rigidity
- Goldstone fluctuations in the amorphous solid state
- Towards finite-dimensional gelation
- Goldstone-type fluctuations and their implications for the amorphous solid state
- Elastic heterogeneity of soft random solids
- Cavity Approach to the Random Solid State
Cited by in corpus (10)
- Non-affine displacements in flexible polymer networks
- Relaxation dynamics in a transient network fluid with competing gel and glass phases
- Stress-stress Correlations Reveal Force Chains in Gels
- Theory of Elastic Microphase Separation
- Finite temperature mechanical instability in disordered lattices
- Orientational order and glassy states in networks of semiflexible polymers
- Statistical physics of isotropic-genesis nematic elastomers: I. Structure and correlations at high temperatures
- Finite-temperature buckling of an extensible rod
- Generalized Deam-Edwards Approach to the Statistical Mechanics of Randomly Crosslinked Systems
- Pseudo-Casimir stresses and elasticity of a confined elastomer film