{
  "$schema": "https://themachinepress.com/schemas/story-v1.schema.json",
  "schema_version": "1.0.0",
  "document_type": "machine_press_story",
  "story": {
    "story_id": "mp-2026-09-18-017",
    "source_story_id": "tmp-sidebar-ftweave-runtime-compiler",
    "edition_id": "mp-2026-09-18-morning-0071",
    "edition_url": "https://themachinepress.com/edition/2026-09-18",
    "position": 19,
    "story_type": "ticker",
    "section": "infrastructure",
    "editorial_classification": "editorial",
    "headline": "Real-Time Scheduling Tripled Fault-Tolerant Throughput",
    "slug": "real-time-scheduling-tripled-fault-tolerant-throughput",
    "dek": "FT-Weave adapted resource preparation, routing and corrections to actual runtime availability.",
    "summary": "FT-Weave adapted resource preparation, routing and corrections to actual runtime availability.",
    "body_text": "Offline schedules assume nominal magic-state throughput and can stall when preparation or teleportation varies. FT-Weave overlaps preparation, communication and logical execution on two modeled neutral-atom architectures. In the transverse-field Ising case study it reached up to 3× the baseline speed, while excessive fine-grained concurrency sometimes lost time to routing contention.",
    "why_it_matters": "FT-Weave adapted resource preparation, routing and corrections to actual runtime availability.",
    "limitations": [],
    "importance": 8,
    "canonical_url": "https://themachinepress.com/story/mp-2026-09-18-017/real-time-scheduling-tripled-fault-tolerant-throughput",
    "json_url": "https://themachinepress.com/story/mp-2026-09-18-017.json",
    "first_published_at": "2026-09-18T09:00:00.000-04:00",
    "modified_at": "2026-09-18T09:00:00.000-04:00",
    "content_status": "new",
    "is_carryover": false,
    "carryover_reason": null,
    "key_claims": [
      {
        "claim_id": "claim-mp-2026-09-18-017-001",
        "text": "FT-Weave adapted resource preparation, routing and corrections to actual runtime availability.",
        "source_ids": [
          "source-2026-09-18-019"
        ],
        "qualification": null
      }
    ],
    "source_ids": [
      "source-2026-09-18-019"
    ],
    "tags": [
      "fault-tolerant computing",
      "quantum compiler",
      "runtime scheduling"
    ],
    "image_url": null,
    "corrections": []
  },
  "sources": [
    {
      "source_id": "source-2026-09-18-019",
      "title": "arXiv preprint 2609.20573",
      "publisher": "arXiv",
      "url": "https://arxiv.org/abs/2609.20573",
      "canonical_url": "https://arxiv.org/abs/2609.20573",
      "source_type": "primary_research",
      "is_primary_source": true,
      "published_at": "2026-09-17T11:32:17.000-04:00",
      "accessed_at": "2026-09-18T08:26:40.599-04:00",
      "supports_claim_ids": [
        "claim-mp-2026-09-18-017-001"
      ]
    }
  ],
  "corrections": [],
  "publisher": {
    "name": "The Machine Press",
    "url": "https://themachinepress.com",
    "description": "A daily newspaper for the age of artificial intelligence."
  },
  "cite_this_report": {
    "title": "Real-Time Scheduling Tripled Fault-Tolerant Throughput",
    "publisher": "The Machine Press",
    "published_at": "2026-09-18T09:00:00.000-04:00",
    "canonical_url": "https://themachinepress.com/story/mp-2026-09-18-017/real-time-scheduling-tripled-fault-tolerant-throughput"
  }
}
