{
  "$schema": "https://www.triadicframeworks.org/schemas/module.schema.json",
  "$generated": "2026-08-03T09:53:00",
  "$version": "1.4",
  "$round": "R5",
  "identity": {
    "module": "RTT_INSIDE_QCOMPUTE",
    "canonical_name": "Inside · qCompute",
    "module_path": "docs/rtt/Inside/qCompute",
    "version": "RTT/3",
    "status": "Active Canonical",
    "category": "RTT Deployment Layer",
    "summary": "Quantum compute RTT deployment context: qubit coherence, error budget, gate fidelity, decoherence rate, and entanglement bandwidth regime diagnostics"
  },
  "purpose": {
    "role": "Quantum compute RTT deployment context: qubit coherence, error budget, gate fidelity, decoherence rate, and entanglement bandwidth regime diagnostics",
    "description": "RTT Inside qCompute is the Quantum Compute deployment context for the RTT engine stack. It maps abstract Triadic signals to quantum-compute-native constructs: structural faultlines → qubit decoherence fault planes and gate fidelity boundaries; drift vectors → error rate migration and thermal drift; substrate capacity → qubit count runway and entanglement bandwidth; coherence index → quantum error-correction cycle quality; DRM → cross-qubit resonance and interference map. The qCompute context produces DDRs formatted as quantum system diagnostic reports, DAMs ranked by error budget impact, and CDCSs tracing decoherence propagation paths.",
    "spine_role": "Domain translation context for Quantum Compute S3 Spine DDR generation",
    "audience": [
      "quantum engineers",
      "researchers",
      "AIs",
      "physicists"
    ]
  },
  "structure": {
    "module_type": "Quantum Compute Domain Context",
    "triadic_lens": "qcompute-as-rtt-deployment",
    "analyzer_layer": [
      "RTT Deployment Layer",
      "Core Frameworks — Structural Spine"
    ]
  },
  "files": {
    "core": [
      "qCompute.md",
      "index.md"
    ],
    "support": [
      "module.json",
      "README.md"
    ],
    "ai": [
      "module.json"
    ]
  },
  "session_context": {
    "rtt": "1",
    "coherence": "declared",
    "drift": "bounded",
    "paradox": "structural",
    "format": "module.json",
    "round": "R5"
  },
  "ai_metadata": {
    "navigation": {
      "url": "https://www.triadicframeworks.org/rtt/Inside/qCompute/",
      "path": "docs/rtt/Inside/qCompute"
    },
    "ai_ready": true,
    "ai_module_id": "RTT_INSIDE_QCOMPUTE",
    "ai_keywords": [
      "qCompute",
      "quantum compute",
      "qubit coherence",
      "decoherence",
      "gate fidelity",
      "error budget",
      "entanglement",
      "quantum DDR",
      "qubit faultlines",
      "TriadicFrameworks",
      "S3 Spine",
      "R5"
    ],
    "ai_purpose": "Quantum compute RTT deployment context: qubit coherence, error budget, gate fidelity, decoherence rate, and entanglement bandwidth regime diagnostics",
    "ai_audience": [
      "quantum engineers",
      "researchers",
      "AIs",
      "physicists"
    ],
    "license": "See docs/LICENSE_module.json",
    "module": {
      "module_id": "RTT_INSIDE_QCOMPUTE",
      "canonical_name": "Inside · qCompute",
      "version": "RTT/3"
    }
  }
}