Published August 30, 2024 | Version v1
Journal article

Reinforcement learning with thermal fluctuations at the nanoscale

  • 1. Institut Lumière Matière, UMR5306, Université Lyon 1 - CNRS, Villeurbanne, France
  • 2. MaLGa, Department of Civil, Chemical and Environmental Engineering, University of Genoa, Genoa, Italy

Description

Reinforcement Learning offers a framework to learn to choose actions in order to control a system. However, at small scales Brownian fluctuations limit the control of nanomachine actuation or nanonavigation and of the molecular machinery of life. We analyze this regime using the general framework of Markov decision processes. We show that at the nanoscale, while optimal control actions should bring an improvement proportional to the small ratio of the applied force times a length scale over the temperature, the learned improvement is smaller and proportional to the square of this small ratio. Consequently, the efficiency of learning, which compares the learning improvement to the theoretical optimal improvement, drops to zero. Nevertheless, these limitations can be circumvented by using actions learned at a lower temperature. These results are illustrated with simulations of the control of the shape of small particle clusters.

Additional details

Publishing Information

Journal Title
Physical Review E
Journal Volume
110
Journal Issue
2
Journal Page Range
6 pgs.
ISSN
1089-3787

Optional Information

Copyright
©2024 American Physical Society
Notes
Contact Email: Contact author: olivier.pierre-louis@univ-lyon1.fr; Record automatically processed