Following the evolution of glassy states under external perturbations: the full replica symmetry breaking solution
arXiv:1512.00341 · doi:10.1088/1742-5468/2016/05/053302
Abstract
The state-following technique allows the study of metastable glassy states under external perturbations. Here we show how this construction can be used to study the behavior of glassy states of Hard Spheres in infinite dimensions under compression or shear strain. In a preceding work it has been shown that in both cases, when the external perturbation is sufficiently strong, glassy states undergo a second-order transition, called the Gardner transition, whereupon a hierarchical structure of marginal micro-states manifests within the original glass state. The purpose of this work is to study the solution of the state-following construction in this marginal phase. We show that upon compression, close to the jamming transition, the metastable states are described by a scaling solution characterized by a set of non-trivial critical exponents that agree with the results obtained in a preceding work, and we compute the value of the final jamming density for various glassy states. Moreover we show that under the action of the shear strain, beyond the Gardner point, the metastable states can be followed in the marginal phase and we detect an overshoot in the stress-strain curve in agreement with numerical and experimental observations. Finally we further characterize the Gardner transition point by computing both the critical 4-point susceptibility and the exponents that characterize the critical slowing down of the dynamics within a glassy state close to the transition.
35 pages, 2 figures
References in corpus (9)
- Fractal free energy landscapes in structural glasses
- Scaling description of the yielding transition in soft amorphous solids at zero temperature
- Hiding Quiet Solutions in Random Constraint Satisfaction Problems
- Exact theory of dense amorphous hard spheres in high dimension. I. The free energy
- Following the evolution of glassy states under external perturbations: compression and shear-strain
- Dynamic criticality at the jamming transition
- Generalization of the cavity method for adiabatic evolution of Gibbs states
- Critical Dynamics in Glassy Systems
- Calorimetric glass transition in a mean field theory approach
Cited by in corpus (37)
- Glass and Jamming Transitions: From Exact Results to Finite-Dimensional Descriptions
- Universality of the SAT-UNSAT (jamming) threshold in non-convex continuous constraint satisfaction problems
- Breakdown of Elasticity in Amorphous Solids
- Shear bands as manifestation of a criticality in yielding amorphous solids
- A stability-reversibility map unifies elasticity, plasticity, yielding and jamming in hard sphere glasses
- Shear yielding and shear jamming of dense hard sphere glasses
- Exploring the complex free energy landscape of the simplest glass by rheology
- Absence of Marginal Stability in a Structural Glass
- Perspective: Gardner Physics in Amorphous Solids and Beyond
- A direct link between active matter and sheared granular systems
- Liu-Nagel phase diagrams in infinite dimension
- A jamming plane of sphere packings
- Marginally stable phases in mean-field structural glasses
- A review on shear jamming
- Protocol-dependent shear modulus of amorphous solids
- Microscopic theory of two-step yielding in attractive colloids
- Mechanical Failure in Amorphous Solids: Scale Free Spinodal Criticality
- Effect of pinning on the yielding transition of amorphous solids
- Experimental observation of the marginal glass phase in a colloidal glass
- Yielding and plasticity in amorphous solids
- Breakdown of Nonlinear Elasticity in Amorphous Solids at Finite Temperatures
- Mean-field dynamics of infinite-dimensional particle systems: global shear versus random local forcing
- Mean field stability map of hard-sphere glasses
- Generating dense packings of hard spheres by soft interaction design
- Evidence for marginal stability in emulsions
- How to count in hierarchical landscapes: a 'full' solution to mean-field complexity
- Disorder-free spin glass transitions and jamming in exactly solvable mean-field models
- Marginal Stability Enables Memory Training in Jammed Solids
- Jamming Energy Landscape is Hierarchical and Ultrametric
- Out-of-equilibrium dynamical equations of infinite-dimensional particle systems. II. The anisotropic case under shear strain
- Hard-Sphere Jamming through the Lens of Linear Optimization
- Jamming, relaxation, and memory in a structureless glass former
- Shear hardening in frictionless amorphous solids near the jamming transition
- Ductile and brittle yielding of athermal amorphous solids: a mean-field paradigm beyond the random field Ising model
- Comment on "Explicit Analytical Solution for Random Close Packing in and "
- Glassy gravity
- Yielding in dense active matter