arXiv · 2605.30950
Coordination without communication: beyond optimisation and geometric Brownian motion
Abstract
We introduce a physically grounded framework for coordination in a population based on information constrained feedback in a partially observed stochastic dynamical system. Population size evolves as a continuous time birth death Markov process whose transition rates respond to a shared stochastic measurement signal correlated with the underlying population state. Individuals neither communicate directly nor optimise strategies; instead, coordination emerges from macro to micro feedback mediated by imperfect common information. We show that geometric Brownian motion arises as a limiting case of the conditional dynamics when measurement strength and population statistics satisfy suitable conditions. More generally, varying the signal to noise properties of the measurement channel produces a wider class of stochastic growth processes, including diffusive and jump like regimes, even though ensemble average growth remains exponential. In an appropriate limit the framework recovers the stochastic multiplicative growth model of Peters and Adamou, providing a physical interpretation of coordination as inference and feedback under partial observability.
Explore related subjects
Keep this discovery
G J Milburn, A K Ringsmuth. 2026-05-29. Coordination without communication: beyond optimisation and geometric Brownian motion. https://arxiv.org/abs/2605.30950
Cite the original work for its findings. Save a collection to share your selection of sources.