DisQ: A Model of Distributed Quantum Processors
July 12, 2024 Β· Declared Dead Β· + Add venue
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Authors
Le Chang, Saitej Yavvari, Rance Cleaveland, Samik Basu, Runzhou Tao, Liyi Li
arXiv ID
2407.09710
Category
quant-ph: Quantum Computing
Cross-listed
cs.PL
Citations
0
Last Checked
5 months ago
Abstract
The next generation of distributed quantum processors combines single-location quantum computing and quantum networking techniques to permit large entangled qubit groups to be established through remote processors, and quantum algorithms can be executed distributively. We present DisQ, as the first formal model of distributed quantum processors, and permit the analysis of distributed quantum programs in the new computation environment. The core of DisQ is a distributed quantum programming language that combines the concepts of Chemical Abstract Machine (CHAM) and Markov Decision Processes (MDP) with the objective of providing clearly distinguishing quantum concurrent and distributed behaviors. Based on the DisQ language, we develop a simulation relation, based on classical simulation infrastructure, to check the equivalence of a quantum algorithm and its distributed versions so that users can develop the distributed version of a sequential quantum program via a simulation check.
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