{
  "$schema": "https://qft.org/data/schemas/qft-protected-export-evidence-ledger-1.0.0.schema.json",
  "schema_id": "qft.supersymmetry-duality.protected-export-evidence-ledger.v1",
  "schema_version": "1.0.0",
  "record_version": "1.0.0",
  "artifact_id": "qft.artifact.supersymmetry-duality.protected.export-evidence-ledger",
  "generated_on": "2026-09-04",
  "evidence_cutoff": "2026-09-04",
  "title": "What each protected export preserves and loses",
  "caption": "Protected quantities, information loss, ambiguity, evidence status, and version boundaries",
  "scope": "Protected data exported from the Volume 10 chapter on protected operators, defects, and exact correspondences. Each row authorizes only the named quantity under its stated hypotheses and consumer contract.",
  "owner_page_ids": [
    "qft.topic.protected-observables.protection-cohomology-operator-mixing",
    "qft.topic.protected-observables.chiral-rings-exact-relations",
    "qft.topic.protected-observables.bps-line-defect-observables",
    "qft.topic.protected-observables.agt-exact-correspondence-status",
    "qft.topic.protected-observables.protected-data-versioned-exports"
  ],
  "canonical_source": {
    "page_id": "qft.topic.protected-observables.protected-data-versioned-exports",
    "path": "src/content/docs/supersymmetry-duality/protected-operators-defects-correspondences/protected-data-versioned-exports.md",
    "route": "/supersymmetry-duality/protected-operators-defects-correspondences/protected-data-versioned-exports/",
    "heading": "What each protected export preserves and loses",
    "anchor": "protected-export-evidence-ledger",
    "table_id": "protected-export-evidence-table"
  },
  "columns": [
    {
      "key": "protected_object",
      "header": "Protected object",
      "definition": "The mathematical or physical object being transported."
    },
    {
      "key": "protected_quantity",
      "header": "Protected quantity",
      "definition": "Exactly which class, relation, observable, coefficient, or record is protected."
    },
    {
      "key": "mechanism_hypotheses_normalization",
      "header": "Mechanism, hypotheses, and normalization",
      "definition": "Why the quantity is controlled and the assumptions and conventions needed to interpret it."
    },
    {
      "key": "discarded_information",
      "header": "Discarded information",
      "definition": "Information deliberately absent from the exported object or erased by the stated quotient or projection."
    },
    {
      "key": "ambiguity",
      "header": "Remaining ambiguity",
      "definition": "Basis, scheme, branch, contour, mixing, or interpretation freedom that the export does not remove."
    },
    {
      "key": "uncertainty",
      "header": "Uncertainty",
      "definition": "Numerical, structural, or conditional uncertainty that must travel with the quantity."
    },
    {
      "key": "evidence_status",
      "header": "Theorem, evidence, or conjecture status",
      "definition": "The logical strength of the claim, separated from the exactness of any arithmetic representation."
    },
    {
      "key": "source_cutoff",
      "header": "Source cutoff",
      "definition": "Latest evidence date represented by this row."
    },
    {
      "key": "consumer_contract",
      "header": "Consumer contract",
      "definition": "The fields and inverse checks a downstream calculation must retain."
    },
    {
      "key": "export_version",
      "header": "Export version",
      "definition": "The schema and record identity, or an explicit statement that no standalone payload exists."
    }
  ],
  "rows": [
    {
      "row_id": "qft.protected-export.q_cohomology_mixing_resolved_class.v1",
      "semantic_key": "q_cohomology_mixing_resolved_class",
      "owner_page_id": "qft.topic.protected-observables.protection-cohomology-operator-mixing",
      "protected_object": "Q-cohomology export contract with operator mixing resolved",
      "protected_quantity": "The class in ker Q / im Q and separated cohomological correlator data after exact and zero-norm directions are removed.",
      "mechanism_hypotheses_normalization": "Q squared vanishes on the selected gauge-invariant sector; the state and measure are Q-invariant; no contact or boundary term survives; the induced two-point form and charge sector are declared.",
      "discarded_information": "The representative, Q-exact descendants, null directions, generic noncohomological correlators, and unprotected spacetime dependence.",
      "ambiguity": "The induced form fixes norms, but a degenerate invariant subspace still permits unitary basis rotations; comparison along parameter space additionally requires a connection or Berry holonomy.",
      "uncertainty": "No numerical error is implied. A surviving contact term, boundary contribution, accidental symmetry, or singular mixing form invalidates the claimed descent instead of enlarging it.",
      "evidence_status": "Conditional theorem: the quotient and Ward-identity descent are exact under the stated cohomological and separated-insertion hypotheses.",
      "source_cutoff": "2026-09-04",
      "consumer_contract": "Export Q, conserved charges, relation matrix, induced Gram form, basis or invariant subspace, and every unresolved null or contact direction; never export a bare operator label as the protected object.",
      "export_version": "Shared comparison record 1.0.0; no standalone cohomology payload is issued in this edition.",
      "source_ids": [
        "witten-1988-tqft",
        "cordova-dumitrescu-intriligator-2019"
      ],
      "independent_check": "Verify that every exact relation lies in the radical of the separated two-point form before quotienting, then confirm that a basis change preserves the induced correlator.",
      "forbidden_inference": "A protected dimension or index class is not automatically a protected OPE coefficient, a unique operator basis, or an unsigned multiplet multiplicity."
    },
    {
      "row_id": "qft.protected-export.chiral_ring_presentation.v1",
      "semantic_key": "chiral_ring_presentation",
      "owner_page_id": "qft.topic.protected-observables.chiral-rings-exact-relations",
      "protected_object": "Chiral-ring presentation export contract",
      "protected_quantity": "Normalized generators and the complete exact relation ideal, including quantum deformations, nilpotents, and branch data when present.",
      "mechanism_hypotheses_normalization": "Q-cohomology and holomorphy with the theory, vacuum branch, generator normalization, holomorphic scale, and equation-of-motion quotient fixed.",
      "discarded_information": "Kähler geometry, generic nonchiral correlators, and—if only the reduced variety is exported—nilpotent operator products and embedded branch structure.",
      "ambiguity": "None within the named presentation. Comparison with another presentation requires explicit polynomial maps and inverses; without them, generator rescalings, scale conventions, branch matching, and primary decomposition remain underdetermined.",
      "uncertainty": "A displayed holomorphic relation can be exact while completeness of the presentation or a proposed ring isomorphism remains an additional proof obligation.",
      "evidence_status": "Established protected relation in the cited SQCD fixture; equivalence of two full ring presentations requires a separately checked inverse and does not follow from matching reduced varieties.",
      "source_cutoff": "2026-09-04",
      "consumer_contract": "Export generators, the full nonreduced ideal, charge and scale conventions, branch decomposition, and forward and inverse generator maps; state explicitly if only a reduced vacuum variety is consumed.",
      "export_version": "Shared comparison record 1.0.0; no standalone chiral-ring payload is issued in this edition.",
      "source_ids": [
        "seiberg-1994-exact-vacua",
        "cachazo-douglas-seiberg-witten-2002"
      ],
      "independent_check": "Check every mapped generator and relation in both directions, preserve nilpotents, and verify the quantum-modified SQCD relation has uniform charges and the classical limit.",
      "forbidden_inference": "An isomorphism of reduced moduli varieties is not a full operator-ring isomorphism and does not determine Kähler or nonchiral data."
    },
    {
      "row_id": "qft.protected-export.bps_line_observable.v1",
      "semantic_key": "bps_line_observable",
      "owner_page_id": "qft.topic.protected-observables.bps-line-defect-observables",
      "protected_object": "BPS-line observable export contract",
      "protected_quantity": "A declared expectation value, framed index, fusion coefficient, difference-operator action, or defect correlator on its stated background—not all defect data at once.",
      "mechanism_hypotheses_normalization": "Global gauge form, trajectory, scalar coupling or disorder singularity, preserved supercharge, electric-magnetic label, screening quotient, framing, counterterms, bubbling sectors, and normalization are fixed.",
      "discarded_information": "Generic unprotected defect-CFT data, regulator-dependent perimeter terms, and any observable not named by the export.",
      "ambiguity": "None within a fully specified export. When importing a result from another convention, its global form, genuine-line lattice, screening quotient, discrete theta angle, framing, counterterms, contour, and bubbling normalization must be translated explicitly; missing metadata makes the comparison underdetermined.",
      "uncertainty": "Exactness belongs only to the selected protected quantity. Contour evaluation, bubbling data, and subtraction prescriptions can retain computational or scheme uncertainty.",
      "evidence_status": "The operator definition is exact once its global and singularity data are fixed; each evaluated value inherits the theorem, localization-evidence, or conjecture status of its named calculation.",
      "source_cutoff": "2026-09-04",
      "consumer_contract": "Export the complete line specification, background, renormalization and framing convention, bubbling sum, selected observable, and duality map; do not replace these fields by an isolated charge pair.",
      "export_version": "Shared comparison record 1.0.0; no standalone line-observable payload is issued in this edition.",
      "source_ids": [
        "kapustin-2006-line-operators",
        "gomis-okuda-pestun-2012"
      ],
      "independent_check": "Verify charge quantization and mutual locality for the declared global form, enumerate allowed bubbling sectors, and compare a convention-matched weak-coupling or localization limit.",
      "forbidden_inference": "Exactness of one line expectation value or framed index does not determine the full defect spectrum, OPE, or ambient theory."
    },
    {
      "row_id": "qft.protected-export.agt_normalized_instanton_block_fixture.v1",
      "semantic_key": "agt_normalized_instanton_block_fixture",
      "owner_page_id": "qft.topic.protected-observables.agt-exact-correspondence-status",
      "protected_object": "Normalized A1 AGT one-instanton/block fixture",
      "protected_quantity": "At the frozen nonpolar rational point, the q^1 identity z1 + nu = F1 with z1 = -1217173/658350, nu = 7/3, and F1 = 318977/658350.",
      "mechanism_hypotheses_normalization": "The U(2) two-antifundamental/two-fundamental orientation, Coulomb pair (a,-a), Omega scale, insertion order, ultraviolet q coordinate, Virasoro Gram normalization, and Abelian factor (1-q)^nu are frozen.",
      "discarded_information": "Higher instanton levels, series convergence and global analytic continuation, the complete S4 gluing problem, higher rank, other punctures, and unprotected observables of either parent theory.",
      "ambiguity": "None in the frozen formal q^1 fixture. Translating another convention can change mass shifts, the U(2)/SU(2) split, Abelian factor, external-weight order, and q coordinate; analytic continuation beyond this fixture also requires a logarithm branch and a localization contour.",
      "uncertainty": "Zero arithmetic uncertainty at one exact rational point; the test has a strict q^1 scope and supplies no error estimate or evidence for omitted orders.",
      "evidence_status": "Exact independent rational calculation at q^1. The original all-level AGT statement is a conjecture with extensive checks and setting-specific algebraic constructions; no full-theory equivalence follows.",
      "source_cutoff": "2026-09-04",
      "consumer_contract": "Import the benchmark id and byte hash together with the matter orientation, mass map, Omega scale, insertion order, q convention, U(1) exponent, exact values, and explicit claim ceiling.",
      "export_version": "AGT benchmark schema 1.0.0; benchmark qft.benchmark.supersymmetry-duality.agt-u2-nf4-one-instanton.v1.",
      "source_ids": [
        "agt-2010-v2",
        "qft-agt-one-instanton-benchmark"
      ],
      "independent_check": "Reconstruct both one-box Young-diagram contributions independently, derive the Virasoro Ward factors, and reject omitted or sign-flipped U(1), reversed weights, wrong matter orientation, wrong q grading, an unhandled coincident-eigenvalue chart input, and a genuine Delta-zero pole input.",
      "forbidden_inference": "One exact coefficient is a normalization-sensitive test, not a proof of all higher coefficients, an analytic equality, the S4 correspondence, or equivalence of the ambient theories."
    },
    {
      "row_id": "qft.protected-export.protected_data_bundle_round_trip.v1",
      "semantic_key": "protected_data_bundle_round_trip",
      "owner_page_id": "qft.topic.protected-observables.protected-data-versioned-exports",
      "protected_object": "Content-addressed protected-SCFT bundle and Volume 9 round trip",
      "protected_quantity": "The N=1 SU(3), Nf=6 record's stored anomaly traces, a, c, C_T, flavor-current coefficients, and three selected chiral-multiplet identities under its conditional fixed-point claim.",
      "mechanism_hypotheses_normalization": "Draft 2020-12 schema validation, RFC 8785 content and convention hashes, exact forward/inverse normalization maps, the declared global form and R-current, and the source-record scope are all checked.",
      "discarded_information": "Unit-normalized non-Ward OPE coefficients, index multiplicities, partition functions, long-multiplet gaps, a complete external-correlator problem, and a proof of fixed-point existence or uniqueness.",
      "ambiguity": "No ambiguity remains in the stored fields or checked normalization maps. Baryon-basis choices and Gram matrices are absent, index inversion is nonunique, and any consumer transformation without an inverse map creates new convention ambiguity.",
      "uncertainty": "The stored algebraic values are exact conditional on the standard interacting fixed-point identification; no numerical covariance is present, and the dynamical existence and uniqueness caveat remains.",
      "evidence_status": "Schema, hash, arithmetic, and round-trip verification are exact mechanical checks; the scientific values retain the source record's conditional duality-supported evidence status.",
      "source_cutoff": "2026-08-24",
      "consumer_contract": "Import the schema-version, record-version, and content-hash tuple unchanged; verify every forward and inverse map; return used and discarded fields, propagated uncertainty, and the strongest allowed downstream claim.",
      "export_version": "Protected-SCFT schema 1.0.0; record 1.0.0; content SHA-256 68a67e66c43e4d0a258f0d26b0b9c08c6164922be256a41112bb5761ee582910.",
      "source_ids": [
        "rfc-8785",
        "w3c-prov-dm-2013",
        "qft-n1-protected-record",
        "qft-volume9-protected-consumer"
      ],
      "independent_check": "Validate the record against its named schema, reproduce its RFC 8785 content and convention hashes, verify all five normalization-map round trips, and confirm that the Volume 9 consumer preserves the exact tuple and exclusions.",
      "forbidden_inference": "A valid schema and digest prove record structure and identity, not the source theory's existence, a missing OPE coefficient, an unsigned index multiplicity, or a long-spectrum statement."
    }
  ],
  "global_stop_rule": "A downstream claim stops at the exact object, hypotheses, normalization, evidence status, uncertainty, and version in its row. In particular, an index coefficient cannot become an unsigned multiplicity or OPE coefficient, an integrated localization observable cannot become a separated correlator, and a checked correspondence coefficient cannot become a full-theory equivalence without a separately validated map.",
  "sources": [
    {
      "kind": "external",
      "id": "witten-1988-tqft",
      "citation": "Edward Witten, Topological Quantum Field Theory, Communications in Mathematical Physics 117 (1988) 353-386",
      "url": "https://doi.org/10.1007/BF01223371",
      "revision": "published version",
      "locators": [
        "Sections 2-3"
      ],
      "use": "Q-cohomology, Q-exact deformations, and protected correlators."
    },
    {
      "kind": "external",
      "id": "cordova-dumitrescu-intriligator-2019",
      "citation": "Clay Cordova, Thomas T. Dumitrescu, and Kenneth Intriligator, Multiplets of Superconformal Symmetry in Diverse Dimensions, Journal of High Energy Physics 03 (2019) 163",
      "url": "https://doi.org/10.1007/JHEP03(2019)163",
      "revision": "published version; arXiv:1612.00809",
      "locators": [
        "Sections 2-4"
      ],
      "use": "Shortening, null states, absolute protection, and recombination."
    },
    {
      "kind": "external",
      "id": "seiberg-1994-exact-vacua",
      "citation": "Nathan Seiberg, Exact Results on the Space of Vacua of Four-Dimensional SUSY Gauge Theories, Physical Review D 49 (1994) 6857-6863",
      "url": "https://doi.org/10.1103/PhysRevD.49.6857",
      "revision": "published version; arXiv:hep-th/9402044",
      "locators": [
        "Section 4"
      ],
      "use": "Quantum-modified SQCD chiral-ring relation."
    },
    {
      "kind": "external",
      "id": "cachazo-douglas-seiberg-witten-2002",
      "citation": "Freddy Cachazo, Michael R. Douglas, Nathan Seiberg, and Edward Witten, Chiral Rings and Anomalies in Supersymmetric Gauge Theory, Journal of High Energy Physics 12 (2002) 071",
      "url": "https://doi.org/10.1088/1126-6708/2002/12/071",
      "revision": "published version; arXiv:hep-th/0211170",
      "locators": [
        "Sections 2-3"
      ],
      "use": "Operator-ring versus reduced-vacuum relations and nilpotent qualifications."
    },
    {
      "kind": "external",
      "id": "kapustin-2006-line-operators",
      "citation": "Anton Kapustin, Wilson-'t Hooft Operators in Four-Dimensional Gauge Theories and S-Duality, Physical Review D 74 (2006) 025005",
      "url": "https://doi.org/10.1103/PhysRevD.74.025005",
      "revision": "published version; arXiv:hep-th/0501015",
      "locators": [
        "Sections 2-4"
      ],
      "use": "Global-form-sensitive electric-magnetic labels and duality action."
    },
    {
      "kind": "external",
      "id": "gomis-okuda-pestun-2012",
      "citation": "Jaume Gomis, Takuya Okuda, and Vasily Pestun, Exact Results for 't Hooft Loops in Gauge Theories on S4, Journal of High Energy Physics 05 (2012) 141",
      "url": "https://doi.org/10.1007/JHEP05(2012)141",
      "revision": "published version; arXiv:1105.2568",
      "locators": [
        "Sections 3-7"
      ],
      "use": "Localization, monopole bubbling, and normalization of protected line expectation values."
    },
    {
      "kind": "external",
      "id": "agt-2010-v2",
      "citation": "Luis F. Alday, Davide Gaiotto, and Yuji Tachikawa, Liouville Correlation Functions from Four-Dimensional Gauge Theories, Letters in Mathematical Physics 91 (2010) 167-197",
      "url": "https://arxiv.org/abs/0906.3219v2",
      "revision": "arXiv:0906.3219v2",
      "locators": [
        "Equations (10)-(18), (28), (56), (74)-(84), and (105)"
      ],
      "use": "A1 parameter dictionary, U(1) factor, sewing order, and one-box localization factors."
    },
    {
      "kind": "external",
      "id": "rfc-8785",
      "citation": "Anders Rundgren, Brad Jordan, and Samuel Erdtman, JSON Canonicalization Scheme, RFC 8785 (2020)",
      "url": "https://www.rfc-editor.org/rfc/rfc8785",
      "revision": "RFC 8785",
      "locators": [
        "Sections 3-4"
      ],
      "use": "Canonical JSON content hashing."
    },
    {
      "kind": "external",
      "id": "w3c-prov-dm-2013",
      "citation": "Luc Moreau and Paolo Missier, editors, PROV-DM: The PROV Data Model, W3C Recommendation (2013)",
      "url": "https://www.w3.org/TR/prov-dm/",
      "revision": "W3C Recommendation, 30 April 2013",
      "locators": [
        "Sections 2-3"
      ],
      "use": "Separation of entities, activities, derivations, and responsibility in provenance."
    },
    {
      "kind": "local",
      "id": "qft-agt-one-instanton-benchmark",
      "path": "public/data/supersymmetry-duality/agt-one-instanton-benchmark.json",
      "public_route": "/data/supersymmetry-duality/agt-one-instanton-benchmark.json",
      "revision": "schema 1.0.0; generated 2026-09-04",
      "use": "Exact one-instanton benchmark, negative controls, and claim ceiling."
    },
    {
      "kind": "local",
      "id": "qft-n1-protected-record",
      "path": "public/data/supersymmetry-duality/protected-scft/n1-sqcd-su3-nf6-v1.0.0.json",
      "public_route": "/data/supersymmetry-duality/protected-scft/n1-sqcd-su3-nf6-v1.0.0.json",
      "revision": "schema 1.0.0; record 1.0.0; evidence cutoff 2026-08-24",
      "use": "Concrete content-addressed protected-data source record."
    },
    {
      "kind": "local",
      "id": "qft-volume9-protected-consumer",
      "path": "src/content/docs/conformal-bootstrap/superconformal-bootstrap-interfaces/protected-data-bootstrap-input.md",
      "public_route": "/conformal-bootstrap/superconformal-bootstrap-interfaces/protected-data-bootstrap-input/",
      "revision": "evidence cutoff 2026-08-24",
      "use": "Concrete Volume 9 consumer preserving the protected-SCFT source tuple and exclusions."
    }
  ],
  "evidence_bindings": {
    "agt_benchmark": {
      "source_json": {
        "path": "figures-src/supersymmetry-duality/agt-one-instanton-benchmark.json",
        "sha256": "ae96806be695d6b381a7d8895c5d57828f889d6f27a6515fc58b19c23068d621",
        "bytes": 15280,
        "use": "frozen exact-rational AGT benchmark source"
      },
      "public_json": {
        "path": "public/data/supersymmetry-duality/agt-one-instanton-benchmark.json",
        "sha256": "ae96806be695d6b381a7d8895c5d57828f889d6f27a6515fc58b19c23068d621",
        "bytes": 15280,
        "use": "public byte-identical AGT benchmark"
      },
      "source_csv": {
        "path": "figures-src/supersymmetry-duality/agt-one-instanton-benchmark.csv",
        "sha256": "17fd02373cd3a44fd26fbb62587eb0ab5677f2166fc0044471ff0130a9f51713",
        "bytes": 846,
        "use": "frozen tabular AGT benchmark source"
      },
      "public_csv": {
        "path": "public/data/supersymmetry-duality/agt-one-instanton-benchmark.csv",
        "sha256": "17fd02373cd3a44fd26fbb62587eb0ab5677f2166fc0044471ff0130a9f51713",
        "bytes": 846,
        "use": "public byte-identical AGT table"
      },
      "generator": {
        "path": "figures-src/supersymmetry-duality/generate-agt-one-instanton-benchmark.mjs",
        "sha256": "82fac54f56df73c1d356877cd692b263127fb77fa9e2c52e150a099a26464b59",
        "bytes": 25671,
        "use": "exact-rational AGT fixture generator"
      },
      "independent_verifier": {
        "path": "scripts/verify-agt-one-instanton-benchmark.mjs",
        "sha256": "8cfe6ed4422a92b1a8c970894bd5b83a520f14d4773fb9be312df24d3f48f03a",
        "bytes": 43631,
        "use": "independent AGT benchmark verifier"
      },
      "schema_id": "qft.supersymmetry-duality.agt-one-instanton-benchmark.v1",
      "schema_version": "1.0.0",
      "benchmark_id": "qft.benchmark.supersymmetry-duality.agt-u2-nf4-one-instanton.v1",
      "generated_on": "2026-09-04",
      "status": "PASS",
      "exact_values": {
        "z1": "-1217173/658350",
        "u1_exponent_nu": "7/3",
        "virasoro_level_one_F1": "318977/658350",
        "acceptance_residual": "0"
      },
      "identity": "z1 + nu = F1 at the frozen nonpolar rational point",
      "claim_ceiling": "Higher instanton orders, convergence or analytic continuation of the formal series, equality of full S4 integrals, other puncture types, higher rank, or a proof of the complete AGT correspondence."
    },
    "protected_scft_round_trip": {
      "record": {
        "path": "public/data/supersymmetry-duality/protected-scft/n1-sqcd-su3-nf6-v1.0.0.json",
        "sha256": "0cbde864f7d209a7248b0b11eede5dbc850031b0753147aeaf038bbdc043687b",
        "bytes": 11358,
        "use": "N=1 SU(3), Nf=6 protected-SCFT record"
      },
      "schema": {
        "path": "public/data/schemas/qft-protected-scft-export-1.0.0.schema.json",
        "sha256": "09f9056038348e2063dd72e8910c6963785d04348dfdc374c9cb4097fdb78ed7",
        "bytes": 24514,
        "use": "strict protected-SCFT profile schema"
      },
      "consumer": {
        "path": "src/content/docs/conformal-bootstrap/superconformal-bootstrap-interfaces/protected-data-bootstrap-input.md",
        "sha256": "5d17a2112653875dafb8831f0a516c4aadf1ac93cc4bf739e4c4a190a016b74b",
        "bytes": 11073,
        "use": "Volume 9 round-trip consumer"
      },
      "tuple": {
        "schema_id": "qft.org/protected-scft-export/n1",
        "schema_version": "1.0.0",
        "record_version": "1.0.0",
        "content_hash": "68a67e66c43e4d0a258f0d26b0b9c08c6164922be256a41112bb5761ee582910"
      },
      "convention_hash": "81124c40cb39131147e94235022cbcea42222795e2a4e4c4842936fc212bfd95",
      "source_cutoff": "2026-08-24",
      "normalization_map_ids": [
        "chiral_R_Delta",
        "spin_to_CDI",
        "c_to_C_T",
        "anomaly_to_tau",
        "R_traces_to_a_c"
      ],
      "normalization_round_trips": 5,
      "consumer_contract": {
        "page_id": "qft.topic.cft-interfaces.protected-data-bootstrap-input",
        "route": "/conformal-bootstrap/superconformal-bootstrap-interfaces/protected-data-bootstrap-input/",
        "tuple_present": true,
        "allowed_claim_present": true,
        "excluded_claim_present": true
      },
      "identity": "N=1 SU(3), Nf=6 protected-SCFT record 1.0.0 round-tripped into its Volume 9 consumer"
    },
    "governance": {
      "artifact_registry": {
        "path": "plans/manifests/artifacts/supersymmetry-duality.json",
        "sha256": "4a883dbb928e8770891f457d7df904b126f88255728aa2ae3931e9c9db0150a2",
        "bytes": 130674,
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