English

Higher-order Efficiency Bound and Its Application to Nonlinear Nano-thermoelectrics

Statistical Mechanics 2021-10-27 v1 Mesoscale and Nanoscale Physics

Abstract

Power and efficiency of heat engines are two conflicting objectives, and a tight efficiency bound is expected to give insights on the fundamental properties of the power-efficiency tradeoff. Here we derive an upper bound on the efficiency of steady-state heat engines, which incorporates higher-order fluctuations of the power. In a prototypical model of nonlinear nanostructured thermoelectrics, we show that the obtained bound is tighter than a well-established efficiency bound based on the thermodynamic uncertainty relation, demonstrating that the higher-order terms have rich information about the thermodynamic efficiency in the nonlinear regime. In particular, we find that the higher-order bound is exactly achieved if the tight coupling condition is satisfied. The obtained bound gives a consistent prediction with the observation that nonlinearity enhances the power-efficiency tradeoff, and would also be useful for various nanoscale engines.

Keywords

Cite

@article{arxiv.2103.06554,
  title  = {Higher-order Efficiency Bound and Its Application to Nonlinear Nano-thermoelectrics},
  author = {Takuya Kamijima and Shun Otsubo and Yuto Ashida and Takahiro Sagawa},
  journal= {arXiv preprint arXiv:2103.06554},
  year   = {2021}
}

Comments

10 pages, 6 figures

R2 v1 2026-06-23T23:59:25.617Z