A small fraction of non-aligning dissenters in a Voronoi-neighbor flock produces reentrant traveling bands, including unusual bands that move through an ordered background.
Banded phases in topological flocks
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Flocking phase transitions found in models of polar active matter are paradigmatic examples of active phase transitions in soft matter. An interesting specialization of flocking models concerns a ``topological'' vs ``metric'' choice by which agents are considered to be interacting neighbors. While recent theoretical work suggests that the order-disorder transition in these polar aligning models is universally first order, numerical studies have suggested that topological models may instead have a continuous transition. Some recent simulations have found that some variations of topologically interacting flocking agents have a discontinuous transition, but unambiguous observations of phase coexistence using common Voronoi-based alignment remains elusive. In this work, we use a custom GPU-accelerated simulation package to perform million-particle-scale simulations of these Voronoi-Vicsek flocking models. By accessing such large systems on appropriately long time scales, we are able to show that a regime of stable phase coexistence between the ordered and disordered phases, confirming the discontinuous nature of this transition in the thermodynamic limit.
citation-role summary
citation-polarity summary
fields
cond-mat.soft 1years
2024 1verdicts
CONDITIONAL 1roles
background 1polarities
unclear 1representative citing papers
citing papers explorer
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Reentrant phase behavior in binary topological flocks with nonreciprocal alignment
A small fraction of non-aligning dissenters in a Voronoi-neighbor flock produces reentrant traveling bands, including unusual bands that move through an ordered background.