Contextuality in Sequential State Discrimination
Abstract
Generalized contextuality is known to be required in optimal strategies for quantum state discrimination protocols. More recently, sequential discrimination tasks have been studied; n players attempt to determine in which state a qubit was prepared, in such a way that they all have a finite probability of success. We consider the extent to which contextuality plays a role in sequential versions of both unambiguous and minimum error discrimination. In the standard nonsequential case where n = 1, we use the COPE formalism to demonstrate that the presence of contextuality is guaranteed not only for the optimal measurement, but for a specific set of nonoptimal measurements as well. In the sequential case n > 1, we show that the presence of contextuality depends on which states are prepared, and on the protocol (unambiguous or minimum error) selected.
Cite
@article{arxiv.2608.04099,
title = {Contextuality in Sequential State Discrimination},
author = {Nyan Raess and Farid Shahandeh},
journal= {arXiv preprint arXiv:2608.04099},
year = {2026}
}
Comments
18 pages, 4 figures