English

Achievable Information-Energy Exchange in a Brownian Information Engine through Potential Profiling

Soft Condensed Matter 2025-04-15 v1

Abstract

The information engine extracts work from a single heat bath using mutual information obtained during the operation cycle. This study investigates the influence of the potential shaping in a Brownian information engine (BIE) in harnessing the information from thermal fluctuations. We have designed a BIE by considering an overdamped Brownian particle inside a confined potential and introducing an appropriate symmetric feedback cycle. We find that the upper bound of the extractable work for a BIE with a monostable centrosymmetric confining potential, with a stable state at the potential centre, depends on the bath temperature and the convexity of the confinement. A concave confinement is more efficient for an information-energy exchange. For a bistable confinement with an unstable centre and two symmetric stable basins, one can find an engine-to-refrigeration transition beyond a certain barrier height related to the energy difference between the energy barrier and the stable basins. Finally, we use the concavity-induced gain in information harnessing to device a BIE in the presence of a multistable potential that can harvest even more energy than monostable confinement.

Keywords

Cite

@article{arxiv.2501.00918,
  title  = {Achievable Information-Energy Exchange in a Brownian Information Engine through Potential Profiling},
  author = {Rafna Rafeek and Debasish Mondal},
  journal= {arXiv preprint arXiv:2501.00918},
  year   = {2025}
}
R2 v1 2026-06-28T20:54:04.784Z