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    "headline": "One Compiler Cut a Quantum Workload 241-Fold",
    "slug": "one-compiler-cut-a-quantum-workload-241-fold",
    "dek": "A traceable path from algorithms to surface-code schedules showed why logical gate totals miss physical cost.",
    "summary": "A traceable path from algorithms to surface-code schedules showed why logical gate totals miss physical cost.",
    "body_text": "The framework converts hierarchical quantum algorithms into dependency-preserving schedules and time-resolved workloads, then co-designs surface-code layout, resource-state supply and execution. Across 20 circuits in seven families, similar logical counts produced very different physical costs. Under the authors’ direct-rotation calibration, choosing the non-Clifford implementation reduced space-time volume by as much as 241.5× for one QAOA amplitude-amplification workload. Tailored layouts lowered routed latency for every benchmark and lowered space-time volume for 13 of them.",
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    "tags": [
      "quantum computing",
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      "title": "arXiv preprint 2609.10965",
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    "title": "One Compiler Cut a Quantum Workload 241-Fold",
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