English

Automated decision-making by chemical echolocation in active droplets

Soft Condensed Matter 2026-02-06 v1 Applied Physics Chemical Physics

Abstract

Motile microorganisms, like bacteria and algae, unify abilities like self-propulsion, autonomous navigation, and decision-making on the micron scale. While recent breakthroughs have led to the creation of synthetic microswimmers and nanoagents that can also self-propel, they still lack the functionality and sophistication of their biological counterparts. This study pioneers a mechanism enabling synthetic agents to autonomously navigate and make decisions, allowing them to solve mazes and transport cargo through complex environments without requiring external cues or guidance. The mechanism exploits chemo-hydrodynamic signals, produced by agents like active droplets or colloids, to remotely sense and respond to their environment - similar to echolocation. Our research paves the way for endowing autonomous, motile synthetic agents with functionalities that have been so far exclusive to biological organisms.

Keywords

Cite

@article{arxiv.2601.00480,
  title  = {Automated decision-making by chemical echolocation in active droplets},
  author = {Aritra K. Mukhopadhyay and Ran Niu and Linhui Fu and Kai Feng and Christopher Fujta and Qiang Zhao and Jinping Qu and Benno Liebchen},
  journal= {arXiv preprint arXiv:2601.00480},
  year   = {2026}
}
R2 v1 2026-07-01T08:48:03.294Z