The Qupit Stabiliser ZX-travaganza: Simplified Axioms, Normal Forms and Graph-Theoretic Simplification

Boldizsár Poór
Robert I. Booth
Titouan Carette
John van de Wetering
Lia Yeh

We present a smorgasbord of results on the stabiliser ZX-calculus for odd prime-dimensional qudits (i.e. qupits). We derive a simplified rule set that closely resembles the original rules of qubit ZX-calculus. Using these rules, we demonstrate analogues of the spider-removing local complementation and pivoting rules. This allows for efficient reduction of diagrams to the affine with phases normal form. We also demonstrate a reduction to a unique form, providing an alternative and simpler proof of completeness. Furthermore, we introduce a different reduction to the graph state with local Cliffords normal form, which leads to a novel layered decomposition for qupit Clifford unitaries. Additionally, we propose a new approach to handle scalars formally, closely reflecting their practical usage. Finally, we have implemented many of these findings in DiZX, a new open-source Python library for qudit ZX-diagrammatic reasoning.

In Shane Mansfield, Benoît Valiron and Vladimir Zamdzhiev: Proceedings of the Twentieth International Conference on Quantum Physics and Logic (QPL 2023), Paris, France, 17-21st July 2023, Electronic Proceedings in Theoretical Computer Science 384, pp. 220–264.
45 pages, lots of figures
Published: 30th August 2023.

ArXived at: https://dx.doi.org/10.4204/EPTCS.384.13 bibtex PDF
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