English

Conclusive discrimination by $N$ sequential receivers between $r\geq2$ arbitrary quantum states

Quantum Physics 2023-08-21 v4

Abstract

In the present article, we develop a general framework for the description of discrimination between r2r\geq2 quantum states by N1N\geq1 sequential receivers in the case where each receiver obtains a conclusive result. This type of discrimination constitutes an NN-sequential extension of the minimum-error discrimination by one receiver. The developed general framework, which is valid for a conclusive discrimination between any number r2r\geq2 of arbitrary quantum states, pure or mixed, of an arbitrary dimension and any number N1N\geq1 of sequential receivers, is based on the notion of a quantum state instrument and this allows us to derive the new important general results. We, in particular, find a general condition on r2r\geq2 quantum states, under which, within the strategy where all types of receivers' quantum measurements are allowed, the optimal success probability is equal to that of the first receiver for any number N2N\geq2 of further sequential receivers. Furthermore, we extend our general framework to include an NN-sequential conclusive discrimination between r2r\geq2 arbitrary quantum states under a noisy communication. As an example, we analyze analytically and numerically a two-sequential conclusive discrimination between two qubit states via depolarizing quantum channels. The derived new general results are important both from the theoretical point of view and for the development of a successful multipartite quantum communication via noisy quantum channels.

Keywords

Cite

@article{arxiv.2102.04747,
  title  = {Conclusive discrimination by $N$ sequential receivers between $r\geq2$ arbitrary quantum states},
  author = {Elena R. Loubenets and Min Namkung},
  journal= {arXiv preprint arXiv:2102.04747},
  year   = {2023}
}

Comments

Improved and extended version, 29 pages

R2 v1 2026-06-23T22:58:30.972Z