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Superdense Coding with GHZ and Quantum Key Distribution with W in the ZX-calculus

2012/10/02 by Anne Hillebrand · 1 citation
Physics and Astronomy · Computer Science · #quant-ph #cs.CR

paper · pdf · doi:10.4204/eptcs.95.10

published as EPTCS 95, 2012, pp. 103-121 · In Proceedings QPL 2011, arXiv:1210.0298

arxiv created 2012/10/02 · arxiv updated 2012/10/03

Abstract

Quantum entanglement is a key resource in many quantum protocols, such as quantum teleportation and quantum cryptography. Yet entanglement makes protocols presented in Dirac notation difficult to verify. This is why Coecke and Duncan have introduced a diagrammatic language for quantum protocols, called the ZX-calculus. This diagrammatic notation is both intuitive and formally rigorous. It is a simple, graphical, high level language that emphasises the composition of systems and naturally captures the essentials of quantum mechanics. In the author's MSc thesis it has been shown for over 25 quantum protocols that the ZX-calculus provides a relatively easy and more intuitive presentation. Moreover, the author embarked on the task to apply categorical quantum mechanics on quantum security; earlier works did not touch anything but Bennett and Brassard's quantum key distribution protocol, BB84. Superdense coding with the Greenberger-Horne-Zeilinger state and quantum key distribution with the W-state are presented in the ZX-calculus in this paper.

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