Growth of Structural Lengthscale in Kob Andersen Binary Mixtures: Role of medium range order

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Main Authors: Kumawat, Sanket, Sharma, Mohit, Nandi, Ujjwal Kumar, Tah, Indrajit, Bhattacharyya, Sarika Maitra
Format: Preprint
Published: 2025
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author Kumawat, Sanket
Sharma, Mohit
Nandi, Ujjwal Kumar
Tah, Indrajit
Bhattacharyya, Sarika Maitra
author_facet Kumawat, Sanket
Sharma, Mohit
Nandi, Ujjwal Kumar
Tah, Indrajit
Bhattacharyya, Sarika Maitra
contents A central and extensively debated question in glass physics concerns whether a single, growing lengthscale fundamentally controls glassy dynamics, particularly in systems lacking obvious structural motifs like the Kob Andersen binary Lennard Jones (KALJ) model. In this work, we investigate structural and dynamical lengthscales in supercooled liquids using KALJ model in two compositions: 80:20 and 60:40. We compute the dynamical lengthscale from displacement displacement correlation functions and observe a consistent growth as temperature decreases. To explore the static counterpart, we use a structural order parameter (SOP) based on the mean field caging potential. While this SOP is known to predict short time dynamics effectively, its bare correlation function reveals minimal spatial growth. Motivated by recent findings that long time dynamics reflect collective rearrangements, we perform spatial coarse graining of the SOP and identify an optimal lengthscale Lmax that maximises structure dynamics correlation. We show that the structural correlation length derived from SOP coarse grained over Lmax exhibits clear growth with cooling and closely tracks the dynamical lengthscale, especially for A particles in the 80:20 mixture and for both A and B particles in the 60:40 system. Our results reconcile the previously observed absence of static length growth in the KALJ model by highlighting the necessity of intermediate range structural descriptors. Furthermore, we find that the particles with larger structural length growth also correspond to species with latent crystallisation tendencies, suggesting a possible link between structural order, dynamics, and incipient crystallisation.
format Preprint
id arxiv_https___arxiv_org_abs_2507_07819
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Growth of Structural Lengthscale in Kob Andersen Binary Mixtures: Role of medium range order
Kumawat, Sanket
Sharma, Mohit
Nandi, Ujjwal Kumar
Tah, Indrajit
Bhattacharyya, Sarika Maitra
Soft Condensed Matter
Disordered Systems and Neural Networks
Materials Science
Statistical Mechanics
Computational Physics
A central and extensively debated question in glass physics concerns whether a single, growing lengthscale fundamentally controls glassy dynamics, particularly in systems lacking obvious structural motifs like the Kob Andersen binary Lennard Jones (KALJ) model. In this work, we investigate structural and dynamical lengthscales in supercooled liquids using KALJ model in two compositions: 80:20 and 60:40. We compute the dynamical lengthscale from displacement displacement correlation functions and observe a consistent growth as temperature decreases. To explore the static counterpart, we use a structural order parameter (SOP) based on the mean field caging potential. While this SOP is known to predict short time dynamics effectively, its bare correlation function reveals minimal spatial growth. Motivated by recent findings that long time dynamics reflect collective rearrangements, we perform spatial coarse graining of the SOP and identify an optimal lengthscale Lmax that maximises structure dynamics correlation. We show that the structural correlation length derived from SOP coarse grained over Lmax exhibits clear growth with cooling and closely tracks the dynamical lengthscale, especially for A particles in the 80:20 mixture and for both A and B particles in the 60:40 system. Our results reconcile the previously observed absence of static length growth in the KALJ model by highlighting the necessity of intermediate range structural descriptors. Furthermore, we find that the particles with larger structural length growth also correspond to species with latent crystallisation tendencies, suggesting a possible link between structural order, dynamics, and incipient crystallisation.
title Growth of Structural Lengthscale in Kob Andersen Binary Mixtures: Role of medium range order
topic Soft Condensed Matter
Disordered Systems and Neural Networks
Materials Science
Statistical Mechanics
Computational Physics
url https://arxiv.org/abs/2507.07819