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    "story_id": "mp-2026-07-24-003",
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    "headline": "A Quantum Defect Moves Into Ordinary Oxide",
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    "dek": "Simulations identified a molybdenum-and-vacancy defect in zinc oxide with properties suited to spin readout and quantum light.",
    "summary": "Simulations identified a molybdenum-and-vacancy defect in zinc oxide with properties suited to spin readout and quantum light.",
    "body_text": "Researchers computationally screened point defects in zinc oxide and identified a molybdenum atom beside a missing oxygen as a promising spin-qubit design. Their first-principles calculations predict sharp visible emission, a spin coherence time near four milliseconds, and the ingredients for single-shot readout. Zinc oxide is compatible with established semiconductor growth, but the work is a theoretical design: the defect still must be fabricated and measured.",
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    "first_published_at": "2026-07-24T09:00:00.000-04:00",
    "modified_at": "2026-07-24T09:28:00.000-04:00",
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    "tags": [
      "quantum computing",
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      "spin qubit"
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    {
      "source_id": "source-2026-07-24-003",
      "title": "Sungkyunkwan University via Newswise: Zinc-oxide spin qubit",
      "publisher": "Sungkyunkwan University via Newswise",
      "url": "https://www.newswise.com/articles/skku-identifies-world-s-first-zinc-oxide-spin-qubit-a-breakthrough-for-next-generation-semiconductor-based-quantum-technology",
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  "cite_this_report": {
    "title": "A Quantum Defect Moves Into Ordinary Oxide",
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    "published_at": "2026-07-24T09:00:00.000-04:00",
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