{"record_type":"pith_number_record","schema_url":"https://pith.science/schemas/pith-number/v1.json","pith_number":"pith:2026:7GBMY6WCBD3MYGAECOD4WKWZ2R","short_pith_number":"pith:7GBMY6WC","schema_version":"1.0","canonical_sha256":"f982cc7ac208f6cc18041387cb2ad9d47991ec23a3b4d0deac09bed1730e13cf","source":{"kind":"arxiv","id":"2607.05343","version":1},"attestation_state":"computed","paper":{"title":"Quantum Computational Resources and Conformal Field Theory: Unifying Spins, Bosons, and Fermions","license":"http://creativecommons.org/licenses/by/4.0/","headline":"","cross_cats":["cond-mat.stat-mech","cond-mat.str-el"],"primary_cat":"quant-ph","authors_text":"Masahiro Hoshino, Ryota Matsuda, Yuto Ashida","submitted_at":"2026-07-06T17:24:20Z","abstract_excerpt":"Characterizing a quantum state through the lens of quantum resources provides an information-theoretic perspective on many-body systems. While quantum entanglement serves as the paradigmatic example of a quantum resource, recent studies have shown that quantum magic, a resource for universal quantum computation, can capture aspects of many-body states complementary to those described by entanglement. For instance, in spin systems, conformal field theory (CFT) analysis of the stabilizer R\\'enyi entropy has revealed universal features of nonstabilizerness that are qualitatively distinct from ent"},"verification_status":{"content_addressed":true,"pith_receipt":true,"author_attested":false,"weak_author_claims":0,"strong_author_claims":0,"externally_anchored":false,"storage_verified":false,"citation_signatures":0,"replication_records":0,"graph_snapshot":true,"references_resolved":false,"formal_links_present":false},"canonical_record":{"source":{"id":"2607.05343","kind":"arxiv","version":1},"metadata":{"license":"http://creativecommons.org/licenses/by/4.0/","primary_cat":"quant-ph","submitted_at":"2026-07-06T17:24:20Z","cross_cats_sorted":["cond-mat.stat-mech","cond-mat.str-el"],"title_canon_sha256":"6cbc52e2505c76e1523b5058d9fb2aebb0870b152f0b7356fa70aecba2e4047c","abstract_canon_sha256":"209873cf19a94b120695512bc75a216ff2b421cf1422eba366772485527ed641"},"schema_version":"1.0"},"receipt":{"kind":"pith_receipt","key_id":"pith-v1-2026-05","algorithm":"ed25519","signed_at":"2026-07-07T03:19:24.216488Z","signature_b64":"0bl0PT2wd76tZiJL9cLSsZuIuwXtjlhVhLbS9id7CMEf0XctnCKjHYvP2fkRDoxpzX4AI/8U5mPjMLpWEc82Cg==","signed_message":"canonical_sha256_bytes","builder_version":"pith-number-builder-2026-05-17-v1","receipt_version":"0.3","canonical_sha256":"f982cc7ac208f6cc18041387cb2ad9d47991ec23a3b4d0deac09bed1730e13cf","last_reissued_at":"2026-07-07T03:19:24.216072Z","signature_status":"signed_v1","first_computed_at":"2026-07-07T03:19:24.216072Z","public_key_fingerprint":"8d4b5ee74e4693bcd1df2446408b0d54"},"graph_snapshot":{"paper":{"title":"Quantum Computational Resources and Conformal Field Theory: Unifying Spins, Bosons, and Fermions","license":"http://creativecommons.org/licenses/by/4.0/","headline":"","cross_cats":["cond-mat.stat-mech","cond-mat.str-el"],"primary_cat":"quant-ph","authors_text":"Masahiro Hoshino, Ryota Matsuda, Yuto Ashida","submitted_at":"2026-07-06T17:24:20Z","abstract_excerpt":"Characterizing a quantum state through the lens of quantum resources provides an information-theoretic perspective on many-body systems. While quantum entanglement serves as the paradigmatic example of a quantum resource, recent studies have shown that quantum magic, a resource for universal quantum computation, can capture aspects of many-body states complementary to those described by entanglement. For instance, in spin systems, conformal field theory (CFT) analysis of the stabilizer R\\'enyi entropy has revealed universal features of nonstabilizerness that are qualitatively distinct from ent"},"claims":{"count":0,"items":[],"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"source":{"id":"2607.05343","kind":"arxiv","version":1},"verdict":{"id":null,"model_set":{},"created_at":null,"strongest_claim":"","one_line_summary":"","pipeline_version":null,"weakest_assumption":"","pith_extraction_headline":""},"integrity":{"clean":true,"summary":{"advisory":0,"critical":0,"by_detector":{},"informational":0},"endpoint":"/pith/2607.05343/integrity.json","findings":[],"available":true,"detectors_run":[],"snapshot_sha256":"c28c3603d3b5d939e8dc4c7e95fa8dfce3d595e45f758748cecf8e644a296938"},"references":{"count":0,"sample":[],"resolved_work":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57","internal_anchors":0},"formal_canon":{"evidence_count":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"author_claims":{"count":0,"strong_count":0,"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"builder_version":"pith-number-builder-2026-05-17-v1"},"aliases":[{"alias_kind":"arxiv","alias_value":"2607.05343","created_at":"2026-07-07T03:19:24.216130+00:00"},{"alias_kind":"arxiv_version","alias_value":"2607.05343v1","created_at":"2026-07-07T03:19:24.216130+00:00"},{"alias_kind":"doi","alias_value":"10.48550/arxiv.2607.05343","created_at":"2026-07-07T03:19:24.216130+00:00"},{"alias_kind":"pith_short_12","alias_value":"7GBMY6WCBD3M","created_at":"2026-07-07T03:19:24.216130+00:00"},{"alias_kind":"pith_short_16","alias_value":"7GBMY6WCBD3MYGAE","created_at":"2026-07-07T03:19:24.216130+00:00"},{"alias_kind":"pith_short_8","alias_value":"7GBMY6WC","created_at":"2026-07-07T03:19:24.216130+00:00"}],"events":[],"event_summary":{},"paper_claims":[],"inbound_citations":{"count":0,"internal_anchor_count":0,"sample":[]},"formal_canon":{"evidence_count":0,"sample":[],"anchors":[]},"links":{"html":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R","json":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R.json","graph_json":"https://pith.science/api/pith-number/7GBMY6WCBD3MYGAECOD4WKWZ2R/graph.json","events_json":"https://pith.science/api/pith-number/7GBMY6WCBD3MYGAECOD4WKWZ2R/events.json","paper":"https://pith.science/paper/7GBMY6WC"},"agent_actions":{"view_html":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R","download_json":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R.json","view_paper":"https://pith.science/paper/7GBMY6WC","resolve_alias":"https://pith.science/api/pith-number/resolve?arxiv=2607.05343&json=true","fetch_graph":"https://pith.science/api/pith-number/7GBMY6WCBD3MYGAECOD4WKWZ2R/graph.json","fetch_events":"https://pith.science/api/pith-number/7GBMY6WCBD3MYGAECOD4WKWZ2R/events.json","actions":{"anchor_timestamp":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R/action/timestamp_anchor","attest_storage":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R/action/storage_attestation","attest_author":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R/action/author_attestation","sign_citation":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R/action/citation_signature","submit_replication":"https://pith.science/pith/7GBMY6WCBD3MYGAECOD4WKWZ2R/action/replication_record"}},"created_at":"2026-07-07T03:19:24.216130+00:00","updated_at":"2026-07-07T03:19:24.216130+00:00"}