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Main Authors: Junior, Antonio Cesar do Prado Rosa, Junior, Elias Brito Alves, Santana, Wanisson Silva, Cruz, Clebson
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2403.03041
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author Junior, Antonio Cesar do Prado Rosa
Junior, Elias Brito Alves
Santana, Wanisson Silva
Cruz, Clebson
author_facet Junior, Antonio Cesar do Prado Rosa
Junior, Elias Brito Alves
Santana, Wanisson Silva
Cruz, Clebson
contents The recently proposed non-additive stochastic model (NSM) offers a coherent physical interpretation for diffusive phenomena in glass-forming systems. This model presents non-exponential relationships between viscosity, activation energy, and temperature, characterizing the non-Arrhenius behavior observed in supercooled liquids. In this work, we fit the NSM viscosity equation to experimental temperature-dependent viscosity data corresponding to twenty-five glass-forming liquids and compare the fit parameters with those obtained using the Vogel-Fulcher-Tammann (VFT), Avramov-Milchev (AM), and Mauro-Yue-Ellison-Gupta-Allan (MYEGA) models. The results demonstrate that the NSM provides an effective fitting equation for modeling viscosity experimental data in comparison with other established models (VFT, AM and MYEGA), characterizing the activation energy in fragile liquids, presenting a reliable indicator of the degree of fragility of the glass-forming liquids.
format Preprint
id arxiv_https___arxiv_org_abs_2403_03041
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Proof-of-concept for a nonadditive stochastic model of supercooled liquids
Junior, Antonio Cesar do Prado Rosa
Junior, Elias Brito Alves
Santana, Wanisson Silva
Cruz, Clebson
Statistical Mechanics
The recently proposed non-additive stochastic model (NSM) offers a coherent physical interpretation for diffusive phenomena in glass-forming systems. This model presents non-exponential relationships between viscosity, activation energy, and temperature, characterizing the non-Arrhenius behavior observed in supercooled liquids. In this work, we fit the NSM viscosity equation to experimental temperature-dependent viscosity data corresponding to twenty-five glass-forming liquids and compare the fit parameters with those obtained using the Vogel-Fulcher-Tammann (VFT), Avramov-Milchev (AM), and Mauro-Yue-Ellison-Gupta-Allan (MYEGA) models. The results demonstrate that the NSM provides an effective fitting equation for modeling viscosity experimental data in comparison with other established models (VFT, AM and MYEGA), characterizing the activation energy in fragile liquids, presenting a reliable indicator of the degree of fragility of the glass-forming liquids.
title Proof-of-concept for a nonadditive stochastic model of supercooled liquids
topic Statistical Mechanics
url https://arxiv.org/abs/2403.03041