English

Quantum simulation of indefinite causal order induced quantum refrigeration

Quantum Physics 2022-03-01 v2

Abstract

In the classical world, physical events always happen in a fixed causal order. However, it was recently revealed that quantum mechanics allows events to occur with indefinite causal order (ICO). In this study, we use an optical quantum switch to experimentally investigate the application of ICO in thermodynamic tasks. Specifically, we simulate the working system interacting with two identical thermal reservoirs in an ICO, observing the quantum heat extraction even though they are in thermal equilibrium where heat extraction is unaccessible by traditional thermal contact. Using such a process, we simulate an ICO refrigeration cycle and investigate its properties. We also show that by passing through the ICO channel multiple times, one can extract more heat per cycle and thus obtain a higher refrigeration performance. Our results suggest that the causal nonseparability can be a powerful resource for quantum thermodynamic tasks.

Keywords

Cite

@article{arxiv.2101.07979,
  title  = {Quantum simulation of indefinite causal order induced quantum refrigeration},
  author = {Huan Cao and Ning-ning Wang and Zhih-Ahn Jia and Chao Zhang and Yu Guo and Bi-Heng Liu and Yun-Feng Huang and Chuan-Feng Li and Guang-Can Guo},
  journal= {arXiv preprint arXiv:2101.07979},
  year   = {2022}
}

Comments

17 pages, 13 figures, including 5 pages, 4 figures of maintext and 12 pages, 9 figures of supplemental

R2 v1 2026-06-23T22:20:26.852Z