Quantum Latin squares and unitary error bases

Author:

Musto Benjamin,Vicary Jamie

Abstract

In this paper we introduce quantum Latin squares, combinatorial quantum objects which generalize classical Latin squares, and investigate their applications in quantum computer science. Our main results are on applications to unitary error bases (UEBs), basic structures in quantum information which lie at the heart of procedures such as teleportation, dense coding and error correction. We present a new method for constructing a UEB from a quantum Latin square equipped with extra data. Developing construction techniques for UEBs has been a major activity in quantum computation, with three primary methods proposed: shift-and-multiply, Hadamard, and grouptheoretic. We show that our new approach simultaneously generalizes the shift-andmultiply and Hadamard methods. Furthermore, we explicitly construct a UEB using our technique which we prove cannot be obtained from any of these existing methods.

Publisher

Rinton Press

Subject

Computational Theory and Mathematics,General Physics and Astronomy,Mathematical Physics,Nuclear and High Energy Physics,Statistical and Nonlinear Physics,Theoretical Computer Science

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Rigidity of Superdense Coding;ACM Transactions on Quantum Computing;2023-07-25

2. Block-circulant complex Hadamard matrices;Journal of Mathematical Physics;2023-05-01

3. Magic squares: Latin, semiclassical, and quantum;Journal of Mathematical Physics;2023-02-01

4. Construction and Local Equivalence of Dual-Unitary Operators: From Dynamical Maps to Quantum Combinatorial Designs;PRX Quantum;2022-12-20

5. Finite Semi-group Modulo and Its Application to Symmetric Cryptography;International Journal of Pure Mathematics;2022-06-01

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