The communication power of indefinite causal order

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Zhao, Xuanqiang, Zhao, Benchi, Branciard, Cyril, Chiribella, Giulio
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917361333829632
author Zhao, Xuanqiang
Zhao, Benchi
Branciard, Cyril
Chiribella, Giulio
author_facet Zhao, Xuanqiang
Zhao, Benchi
Branciard, Cyril
Chiribella, Giulio
contents Quantum theory is in principle compatible with scenarios where physical processes occur in an indefinite order, potentially yielding advantages in a broad range of information processing tasks. However, advantages in communication, the most basic form of information processing, have so far remained controversial and hard to prove. Here we provide a framework for assessing the role of causal order in communication, by comparing different causal structures under the constraint that the allowed operations must not generate signaling from signaling-incapable devices. Using this framework, we establish a clear-cut advantage of indefinite causal order, and, at the same time, we identify a series of fundamental limits to the communication power of causal structures in quantum mechanics. Notably, we find that a special form of indefinite causal order, obtained by coherently controlling the order of two processes, enhances the transmission of classical messages in a one-shot scenario, but no quantum operation with indefinite order can offer advantages over shared entanglement when asymptotically many uses of the same communication device are employed. Overall, our results unveil non-trivial relations between communication, causal order, entanglement, and no-signaling quantum processes.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08507
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The communication power of indefinite causal order
Zhao, Xuanqiang
Zhao, Benchi
Branciard, Cyril
Chiribella, Giulio
Quantum Physics
Quantum theory is in principle compatible with scenarios where physical processes occur in an indefinite order, potentially yielding advantages in a broad range of information processing tasks. However, advantages in communication, the most basic form of information processing, have so far remained controversial and hard to prove. Here we provide a framework for assessing the role of causal order in communication, by comparing different causal structures under the constraint that the allowed operations must not generate signaling from signaling-incapable devices. Using this framework, we establish a clear-cut advantage of indefinite causal order, and, at the same time, we identify a series of fundamental limits to the communication power of causal structures in quantum mechanics. Notably, we find that a special form of indefinite causal order, obtained by coherently controlling the order of two processes, enhances the transmission of classical messages in a one-shot scenario, but no quantum operation with indefinite order can offer advantages over shared entanglement when asymptotically many uses of the same communication device are employed. Overall, our results unveil non-trivial relations between communication, causal order, entanglement, and no-signaling quantum processes.
title The communication power of indefinite causal order
topic Quantum Physics
url https://arxiv.org/abs/2510.08507