Finite-Time Optimization of Quantum Szilard heat engine
Abstract
We propose a finite-time quantum Szilard engine (QSE) with a quantum particle with spin as the working substance (WS) to accelerate the operation of information engines. We introduce a Maxwell's demon (MD) to probe the spin state within a finite measurement time to capture the which-way information of the particle, quantified by the mutual information between WS and MD. We establish that the efficiency of QSE is bounded by , where characterizes the ideality of quantum measurement, and approaches for the Carnot efficiency reached under ideal measurement in quasi-static regime. We find that the power of QSE scales as in the short-time regime and as in the long-time regime. Additionally, considering the energy cost for erasing the MD's memory required by Landauer's principle, there exists a threshold time that guarantees QSE to output positive work.
Cite
@article{arxiv.2303.14619,
title = {Finite-Time Optimization of Quantum Szilard heat engine},
author = {Tan-Ji Zhou and Yu-Han Ma and C. P. Sun},
journal= {arXiv preprint arXiv:2303.14619},
year = {2026}
}
Comments
6+10 pages, 3+4 figures, Comments are welcome