Amorphous solids subjected to athermal quasistatic oscillatory shear undergo a transition from periodic reversible dynamics to irreversible diffusive dynamics at yielding. How irreversibility arises in such deterministic, strongly dissipative systems remains unclear. Here we directly test the proposal that post-yield irreversibility originates from chaotic dynamics and exponential sensitivity to initial conditions. Contrary to this interpretation, perturbations initially contract rather than grow, even in the irreversible regime, with nearby trajectories remaining close for extended periods. Separation occurs only through rare branching events, after which the distance grows diffusively at the rate expected for independent trajectories. The waiting times to branching are exponentially distributed, defining a steady-state branching rate that vanishes in trained reversible limit cycles and becomes finite above yielding. A mean-field soft-spot model reproduces these branching statistics and reveals their microscopic origin: a small perturbation can reverse the activation order of two nearly degenerate plastic instabilities, altering the subsequent sequence of plastic events. These results show how local stability and global irreversibility can coexist in a dissipative many-body system and identify instability-selection-induced branching as a distinct dynamical route to irreversibility in driven amorphous solids.
The dramatic slowing down of structural relaxation in supercooled liquids is accompanied by the emergence of dynamic heterogeneity. A monotonically increasing dynamical correlation length, measured at the $\alpha$-timescale, is one of the remarkable features of this phenomenon. Here we show that this picture is incompl...
Corentin C. L. Laudicina, Ilian Pihlajamaa, Liesbeth M. C. Janssen et al.· 0 citations
Plastic deformation in crystalline solids arises from discrete microstructural rearrangements driven by energy exchange and crystallographic constraints. Conventional continuum plasticity models, even when enriched with crystal anisotropy, rely on prescribed flow rules and struggle to represent the emergence of inter...
E. Borodin, Afonso D. M. Barroso, A. Jivkov· Proceedings of the Royal Soc...· 0 citations
We formulate a two-intermediate model for precursor-fed autocatalysis with a bounded phenomenological thermokinetic factor. Positivity, dissipativity, existence of a positive equilibrium, an a priori equilibrium bound, and a conditional uniqueness criterion are established analytically. Generic saddle-node and Hopf con...
Saad Jamhan Aldosari, M. S. Shabbir, A. Tassaddiq et al.· Match-communications in Math...· 0 citations
We investigate a discontinuous route from integrability to chaos using a confined stochastic random walk and a deterministic stadium-like billiard. In both systems, the stationary diffusive observable exhibits a finite jump at the transition: it vanishes at the unperturbed limit but approaches a finite, geometry-contro...
A. K. P. da Fonseca, Marcelo de Almeida Presotto, D. M. Oliveira et al.· 0 citations
We numerically investigate the mechanical response of amorphous solids to localized force dipoles, referred to as pinching, using athermal quasistatic simulations of model glasses with varying degrees of stability. We employ a control parameter, the imposed extension, corresponding to the increase in rest length betwee...
Takumi Nagasawa, K. Martens, J. Barrat et al.· 0 citations
The yielding transition marks the onset of irreversible plastic deformation in amorphous solids and plays a central role in determining the mechanical stability and failure of metallic glasses, colloidal suspensions, and biological assemblies. Despite extensive research, the microscopic factors governing the nature of...
A. Mandal, Roni Chatterjee, Smarajit Karmakar· 0 citations
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