arXiv · 2208.00288
Information engine in a nonequilibrium bath
Abstract
Information engines can convert thermal fluctuations of a bath at temperature $T$ into work at rates of order $k_\mathrm{B}T$ per relaxation time of the system. We show experimentally that such engines, when in contact with a bath that is out of equilibrium, can extract much more work. We place a heavy, micron-scale bead in a harmonic potential that ratchets up to capture favorable fluctuations. Adding a fluctuating electric field increases work extraction up to ten times, limited only by the strength of applied field. Our results connect Maxwell's demon with energy harvesting and an estimate of efficiency shows that information engines in nonequilibrium baths can greatly outperform conventional engines.
Explore related subjects
Keep this discovery
Tushar K. Saha, Jannik Ehrich, Momčilo Gavrilov, Susanne Still, David A. Sivak, John Bechhoefer. 2022-07-30. Information engine in a nonequilibrium bath. https://doi.org/10.1103/physrevlett.131.057101
Cite the original work for its findings. Save a collection to share your selection of sources.