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An information engine that rectifies nonequilibrium fluctuations

ORAL

Abstract

Information engines produce useful output work from heat by using feedback to rectify thermal fluctuations. We report on an experimental realization of such an engine that, when in contact with a bath that is out of equilibrium, can extract orders of magnitude more work than an information engine in contact with an equilibrium bath. We place a micron-scale bead in a harmonic potential that ratchets up, capturing favorable fluctuations. Adding a fluctuating electric field, which generates nonequilibrium fluctuations, drastically increases work extraction. Calculating the minimum thermodynamic costs to achieve feedback control, we estimate the engine's efficiency, illustrating that information engines in nonequilibrium baths can not only do more work but also be more efficient than conventional engines.

Publication: https://arxiv.org/abs/2208.00288 (Information engine in a nonequilibrium bath)<br><br>https://arxiv.org/abs/2206.10793 (Energetic cost of feedback control)

Presenters

  • Jannik Ehrich

    Simon Fraser University

Authors

  • Jannik Ehrich

    Simon Fraser University

  • Tushar K Saha

    Simon Fraser University

  • Momcilo Gavrilov

    Simon Fraser University

  • Susanne Still

    University of Hawaii at Manoa

  • David A Sivak

    Simon Fraser University

  • John Bechhoefer

    Simon Fraser University