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Architecture aware compilation of quantum circuits via lazy synthesis

Simon Martiel, Timothée Goubault de Brugière

2022Quantum15 citationsDOIOpen Access PDF

Abstract

Qubit routing is a key problem for quantum circuit compilation. It consists in rewriting a quantum circuit by adding the least possible number of instructions to make the circuit compliant with some architecture's connectivity constraints. Usually, this problem is tackled via either SWAP insertion techniques or re-synthesis of portions of the circuit using architecture aware synthesis algorithms. In this work, we propose a meta-heuristic that couples the iterative approach of SWAP insertion techniques with greedy architecture-aware synthesis routines. We propose two new compilation algorithms based on this meta-heuristic and compare their performances to state-of-the-art quantum circuit compilation techniques for several standard classes of quantum circuits and show significant reduction in the entangling gate overhead due to compilation.

Topics & Concepts

Computer scienceQuantum circuitSwap (finance)HeuristicRewritingQubitQuantumArchitectureParallel computingComputer architectureComputer engineeringElectronic circuitQuantum computerAlgorithmTheoretical computer scienceQuantum error correctionProgramming languageElectrical engineeringQuantum mechanicsEconomicsArtFinancePhysicsArtificial intelligenceVisual artsEngineeringQuantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum-Dot Cellular Automata
Architecture aware compilation of quantum circuits via lazy synthesis | Litcius