Group-Majority-Voting protocol prepares GHZ states on 30-60 qubit simulated devices with 2.4x higher fidelity than the Line Dynamic method by using parallel local preparations and majority-voted boundary measurements.
An Efficient Heuristic Procedure for Partitioning Graphs
2 Pith papers cite this work. Polarity classification is still indexing.
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2026 2verdicts
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Presents an optimal gate-packing partitioning scheme for the QFT that aims to minimize e-bit count in distributed quantum systems and validates it on hardware.
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Robust GHZ State Preparation via Majority-Voted Boundary Measurements
Group-Majority-Voting protocol prepares GHZ states on 30-60 qubit simulated devices with 2.4x higher fidelity than the Line Dynamic method by using parallel local preparations and majority-voted boundary measurements.
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Towards an Optimally Distributed Quantum Fourier Transform Circuit
Presents an optimal gate-packing partitioning scheme for the QFT that aims to minimize e-bit count in distributed quantum systems and validates it on hardware.