Anomalous heat flow and quantum Otto cycle with indefinite causal order
Abstract
The principle that heat spontaneously flows from higher temperature to lower temperature is a cornerstone of classical thermodynamics, often assumed to be independent of the sequence of interactions. While this holds true for macroscopic systems at equilibrium, here we show that, when the order of interactions between two identical thermalization channels is indefinite, an anomalous heat flow emerges, whereby heat can sometime flow from a colder entity to a hotter one. Taking advantage of this anomalous heat flow, we design a quantum Otto cycle with indefinite causal order, which not only achieves refrigeration but also generates work. The anomalous heat flow and the quantum Otto cycle are experimentally simulated in a photonic quantum setup, which provides a proof-of-principle demonstration of the theory.
Keywords
Cite
@article{arxiv.2511.04028,
title = {Anomalous heat flow and quantum Otto cycle with indefinite causal order},
author = {Qing-Feng Xue and Qi Zhang and Xu-Cai Zhuang and Yun-Jie Xia and Enrico Russo and Giulio Chiribella and Rosario Lo Franco and Zhong-Xiao Man},
journal= {arXiv preprint arXiv:2511.04028},
year = {2025}
}
Comments
6 + 7 pages, 6 + 6 figures