Density-field structures in a few systems undergoing velocity ordering

Fuente: arXiv
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Main Authors: Das, Subir K., Chatterjee, Sohini, Akram, Wasim, Paul, Subhajit, Chakraborty, Saikat, Bera, Arabinda
Format: Preprint
Published: 2025
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_version_ 1866916693092073472
author Das, Subir K.
Chatterjee, Sohini
Akram, Wasim
Paul, Subhajit
Chakraborty, Saikat
Bera, Arabinda
author_facet Das, Subir K.
Chatterjee, Sohini
Akram, Wasim
Paul, Subhajit
Chakraborty, Saikat
Bera, Arabinda
contents We consider two (off-lattice) varieties of out-of-equilibrium systems, viz., granular and active matter systems, that, in addition to displaying velocity ordering, exhibit fascinating pattern formation in the density field, similar to those during vapor-liquid phase transitions. In the granular system, velocity ordering occurs due to reduction in the normal components of velocities, arising from inelastic collisions. In the active matter case, on the other hand, velocity alignment occurs because of the inherent tendency of the active particles to follow each other. Inspite of this difference, the patterns, even during density-field evolutions, in these systems can be remarkably similar. This we have quantified via the calculations of the two-point equal time correlation functions and the structure factors. These results have been compared with the well studied case of kinetics of phase separation within the framework of the Ising model. Despite the order-parameter conservation constraint in all the cases, in the density field, the quantitative structural features in the Ising case is quite different from those for the granular and active matters. Interestingly, the correlation function for the latter varieties, particularly for an active matter model, quite accurately describes the structure in a real assembly of biologically active particles.
format Preprint
id arxiv_https___arxiv_org_abs_2504_11817
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Density-field structures in a few systems undergoing velocity ordering
Das, Subir K.
Chatterjee, Sohini
Akram, Wasim
Paul, Subhajit
Chakraborty, Saikat
Bera, Arabinda
Soft Condensed Matter
Statistical Mechanics
We consider two (off-lattice) varieties of out-of-equilibrium systems, viz., granular and active matter systems, that, in addition to displaying velocity ordering, exhibit fascinating pattern formation in the density field, similar to those during vapor-liquid phase transitions. In the granular system, velocity ordering occurs due to reduction in the normal components of velocities, arising from inelastic collisions. In the active matter case, on the other hand, velocity alignment occurs because of the inherent tendency of the active particles to follow each other. Inspite of this difference, the patterns, even during density-field evolutions, in these systems can be remarkably similar. This we have quantified via the calculations of the two-point equal time correlation functions and the structure factors. These results have been compared with the well studied case of kinetics of phase separation within the framework of the Ising model. Despite the order-parameter conservation constraint in all the cases, in the density field, the quantitative structural features in the Ising case is quite different from those for the granular and active matters. Interestingly, the correlation function for the latter varieties, particularly for an active matter model, quite accurately describes the structure in a real assembly of biologically active particles.
title Density-field structures in a few systems undergoing velocity ordering
topic Soft Condensed Matter
Statistical Mechanics
url https://arxiv.org/abs/2504.11817