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Distributed Scheduling of Quantum Circuits with Noise and Time Optimization

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arxiv 2309.06005 v3 pith:IPTPDABR submitted 2023-09-12 quant-ph

Distributed Scheduling of Quantum Circuits with Noise and Time Optimization

classification quant-ph
keywords hardwaretimeerrorexecutionnoisequantumschedulercircuit
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum computers are currently noisy, particularly without error correction and fault tolerance. Methods like error suppression and mitigation are widely used to improve performance. Circuit cutting, which partitions a circuit into smaller subcircuits, can also reduce noise. In this paper, we propose an Integer Linear Program (ILP) based scheduler for optimizing subcircuit schedules on available hardware. The goal is to maximize overall fidelity and ensure each hardware does not exceed its predefined execution time. For 10-qubit circuits, our method achieves an average fidelity improvement of ~12.3% and ~21% with and without measurement error mitigation, respectively, even with minimal execution time. Additionally, we introduce a polynomial-time graph-theoretic scheduling method that matches the ILP scheduler's results when the number of subcircuits does not exceed the number of hardware units, each with minimal execution time. This noise and time-optimized scheduler represents a crucial step towards optimal quantum computing performance, especially with limited hardware access.

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Cited by 3 Pith papers

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

  1. Qurator: Scheduling Hybrid Quantum-Classical Workflows Across Heterogeneous Cloud Providers

    quant-ph 2026-04 unverdicted novelty 7.0

    Qurator jointly optimizes queue time and fidelity for hybrid quantum-classical workflows across providers using quantum-aware DAG scheduling and a unified logarithmic fidelity score, achieving 30-75% wait reduction at...

  2. MOSAIQC: Mixed-topology-aware Optimization for Scalable Approximate noise-Informed Quantum circuit Cutting

    quant-ph 2026-07 conditional novelty 6.0

    A heuristic circuit-cutting framework combining METIS, tabu search, and quadratic assignment reports faster runtimes and fewer cuts than Qiskit's add-on on tested benchmarks.

  3. Q-Backbone: A Quantum-Enhanced Control Plane for Future Communication Networks

    cs.OH 2026-06 unverdicted novelty 4.0

    Q-Backbone is a proposed quantum-classical hybrid control plane architecture with a Quantum Invocation Policy for task orchestration, shown in one case study to serve up to 25% more deadline-constrained quantum jobs t...