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A framework for exact synthesis

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arxiv 1504.04350 v1 pith:O5UMXM2A submitted 2015-04-16 quant-ph cs.ET

classification quant-phcs.ET
keywords exactsynthesissetsalgorithmsanyonscliffordframeworkgate
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Exact synthesis is a tool used in algorithms for approximating an arbitrary qubit unitary with a sequence of quantum gates from some finite set. These approximation algorithms find asymptotically optimal approximations in probabilistic polynomial time, in some cases even finding the optimal solution in probabilistic polynomial time given access to an oracle for factoring integers. In this paper, we present a common mathematical structure underlying all results related to the exact synthesis of qubit unitaries known to date, including Clifford+T, Clifford-cyclotomic and V-basis gate sets, as well as gates sets induced by the braiding of Fibonacci anyons in topological quantum computing. The framework presented here also provides a means to answer questions related to the exact synthesis of unitaries for wide classes of other gate sets, such as Clifford+T+V and SU(2) level k anyons.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Buildings for Synthesis with Clifford+R

    quant-ph 2025-10 reject novelty 4.0 of 10

    An explicit tree is proposed for the qutrit Clifford+R gate set as a new proof of the known ring characterization, but the tree's degree structure is miscomputed.

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