Interference of dynamical arrest, thermodynamic instabilities and energy-scale competition in symmetric binary mixtures

Fuente: arXiv
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Autori principali: Peredo-Ortiz, Ricardo, Lázaro-Lázaro, Edilio, Medina-Noyola, Magdaleno, Elizondo-Aguilera, Luis Fernando
Natura: Preprint
Pubblicazione: 2026
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author Peredo-Ortiz, Ricardo
Lázaro-Lázaro, Edilio
Medina-Noyola, Magdaleno
Elizondo-Aguilera, Luis Fernando
author_facet Peredo-Ortiz, Ricardo
Lázaro-Lázaro, Edilio
Medina-Noyola, Magdaleno
Elizondo-Aguilera, Luis Fernando
contents The equilibrium behavior of binary mixtures can be understood through the competition of energy scales, which classifies their corresponding phase diagrams into distinct topological regimes (Types I-IV). However, in many soft-matter mixtures, strong competing interactions and kinetic barriers often promote dynamical arrest, disrupting the formation of equilibrium and metastable states, and thus rendering conventional phase diagrams incomplete. Here we extend the description and classification of binary systems inside regions of thermodynamical instability. Specifically, we discuss how the interplay between two kind of instabilities and kinetic arrest generates a variety of amorphous states driven by different underlying mechanisms. For strong cross-attraction, for example, dynamical arrest suppresses demixing, whereas in competitive regimes, a mixture may display either condensation-driven or demixing-induced arrested states. The crossover between these regimes can be described by a structural order parameter $χ$, providing a unified non-equilibrium description that reconciles theoretical predictions with experimentally observed arrested states.
format Preprint
id arxiv_https___arxiv_org_abs_2605_14064
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Interference of dynamical arrest, thermodynamic instabilities and energy-scale competition in symmetric binary mixtures
Peredo-Ortiz, Ricardo
Lázaro-Lázaro, Edilio
Medina-Noyola, Magdaleno
Elizondo-Aguilera, Luis Fernando
Soft Condensed Matter
Statistical Mechanics
The equilibrium behavior of binary mixtures can be understood through the competition of energy scales, which classifies their corresponding phase diagrams into distinct topological regimes (Types I-IV). However, in many soft-matter mixtures, strong competing interactions and kinetic barriers often promote dynamical arrest, disrupting the formation of equilibrium and metastable states, and thus rendering conventional phase diagrams incomplete. Here we extend the description and classification of binary systems inside regions of thermodynamical instability. Specifically, we discuss how the interplay between two kind of instabilities and kinetic arrest generates a variety of amorphous states driven by different underlying mechanisms. For strong cross-attraction, for example, dynamical arrest suppresses demixing, whereas in competitive regimes, a mixture may display either condensation-driven or demixing-induced arrested states. The crossover between these regimes can be described by a structural order parameter $χ$, providing a unified non-equilibrium description that reconciles theoretical predictions with experimentally observed arrested states.
title Interference of dynamical arrest, thermodynamic instabilities and energy-scale competition in symmetric binary mixtures
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2605.14064