Tricritical points in a Vicsek model of self-propelled particles with bounded confidence
Maksym Romenskyy, Vladimir Lobaskin, Thomas Ihle

TL;DR
This paper investigates how bounded confidence affects the phase transitions in a Vicsek model of self-propelled particles, revealing tricritical points and phase stability changes through simulations and kinetic theory.
Contribution
It introduces a bounded-confidence collision rule into the Vicsek model and analytically and numerically explores its impact on collective motion and phase transitions.
Findings
Critical noise decreases with smaller restriction angles.
Transition from continuous to discontinuous with decreasing angle.
Identification of tricritical points and stability of nematic phases.
Abstract
We study the orientational ordering in systems of self-propelled particles with selective interactions. To introduce the selectivity we augment the standard Vicsek model with a bounded-confidence collision rule: a given particle only aligns to neighbors who have directions quite similar to its own. Neighbors whose directions deviate more than a fixed restriction angle are ignored. The collective dynamics of this systems is studied by agent-based simulations and kinetic mean field theory. We demonstrate that the reduction of the restriction angle leads to a critical noise amplitude decreasing monotonically with that angle, turning into a power law with exponent 3/2 for small angles. Moreover, for small system sizes we show that upon decreasing the restriction angle, the kind of the transition to polar collective motion changes from continuous to discontinuous. Thus, an apparent…
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Taxonomy
TopicsChemical and Physical Properties of Materials · Advanced Physical and Chemical Molecular Interactions · Scientific Research and Discoveries
