English

Catalytic advantage in Otto-like two-stroke quantum engines

Quantum Physics 2024-09-25 v1

Abstract

We demonstrate how to incorporate a catalyst to enhance the performance of a heat engine. Specifically, we analyze efficiency in one of the simplest engines models, which operates in only two strokes and comprises of a pair of two-level systems, potentially assisted by a dd-dimensional catalyst. When no catalysis is present, the efficiency of the machine is given by the Otto efficiency. Introducing the catalyst allows for constructing a protocol which overcomes this bound, while new efficiency can be expressed in a simple form as a generalization of Otto's formula: 11dωcωh1 - \frac{1}{d} \frac{\omega_c}{\omega_h}. The catalyst also provides a bigger operational range of parameters in which the machine works as an engine. Although an increase in engine efficiency is mostly accompanied by a decrease in work production (approaching zero as the system approaches Carnot efficiency), it can lead to a more favorable trade-off between work and efficiency. The provided example introduces new possibilities for enhancing performance of thermal machines through finite-dimensional ancillary systems.

Keywords

Cite

@article{arxiv.2401.15173,
  title  = {Catalytic advantage in Otto-like two-stroke quantum engines},
  author = {Marcin Łobejko and Tanmoy Biswas and Paweł Mazurek and Michał Horodecki},
  journal= {arXiv preprint arXiv:2401.15173},
  year   = {2024}
}

Comments

6 Pages, 7 Figures (Comments Welcome)

R2 v1 2026-06-28T14:28:38.438Z