{"as_of":"2026-08-21T23:57:00Z","caps":{"database_statements":6,"inbound":100,"outbound":100},"context_digest":"sha256:19402efa8fcf67225263967503e2ccacfbb545491eea5ca8bd818f57bdb464e8","coverage":[{"denominator":0,"lane":"reference_resolution","note":"Typed states for the displayed outbound observations.","records_observed":0,"source":"paper_references, paper_reference_links","source_observed_at":null,"state":"measured"},{"denominator":2,"lane":"standing_notices","note":"One-hop event checks from named stored sources.","records_observed":2,"source":"scholarly_work_events, retraction_status_cache","source_observed_at":"2026-08-21T06:32:19.484+00:00","state":"measured"},{"denominator":2,"lane":"inbound_itemization","note":"Pith citing papers itemized under the disclosed page cap.","records_observed":2,"source":"paper_references, paper_reference_links","source_observed_at":"2026-08-10T22:10:58.144792Z","state":"measured"},{"denominator":1,"lane":"external_citation_measurements","note":"A source-named dated measurement, never combined with another source.","records_observed":0,"source":"pith","source_observed_at":"2026-08-10T22:10:59.134894Z","state":"measured"}],"external_citation_measurements":[],"inbound":[{"citation":{"cited_paper":{"arxiv_id":"2105.13761","last_updated":"2021-06-17T07:54:27Z","snapshot_observed_at":"2026-08-19T08:33:28.274047Z","submitted_at":"2021-05-28T12:06:51Z","title":"Detecting Chiral Magnetic Effect via Deep Learning","version":3},"cited_work":{"arxiv_id":"2105.13761","doi":null,"metadata_source":"pith","pith_arxiv_id":"2105.13761","snapshot_observed_at":"2026-08-10T22:10:59.134894Z","title":"Detecting Chiral Magnetic Effect via Deep Learning","venue":"hep-ph","work_id":"cf9c59ee-7961-440e-8fd1-3493386ed574","year":2021},"citing_paper":{"arxiv_id":"2501.02794","last_updated":"2025-01-06T06:28:02Z","snapshot_observed_at":"2026-08-21T14:35:32.278870Z","submitted_at":"2025-01-06T06:28:02Z","title":"Constraining the chiral magnetic effect using spectator and participant planes across Au+Au and isobar collisions at $\\sqrt{s_{_{\\rm NN}}} = 200$ GeV","version":1},"reference_index":39,"source":"pdf_text","source_observed_at":"2026-08-10T22:10:58.144792Z"},"links":{"cited_paper":"/paper/2105.13761","citing_paper":"/paper/2501.02794"},"observation_digest":"sha256:a6f16bd01524d4a31d4f8bf502432a452e7db4db9d4692ce6ff4564caeaace91","observation_id":"67db2d59-4c7b-475c-af7c-8a43331a252c","resolution":{"observed_at":"2026-08-10T22:10:59.139290Z","resolver_source":"local_arxiv","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-21T06:32:19.484+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-21T06:32:19.484+00:00","source":"crossref"},{"observed_at":"2026-08-21T06:32:16.066871+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":{"arxiv_id":"2105.13761","last_updated":"2021-06-17T07:54:27Z","snapshot_observed_at":"2026-08-19T08:33:28.274047Z","submitted_at":"2021-05-28T12:06:51Z","title":"Detecting Chiral Magnetic Effect via Deep Learning","version":3},"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":"2105.13761","snapshot_observed_at":"2026-08-03T08:12:16.600840Z","title":null,"venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2601.18133","last_updated":"2026-06-18T06:34:56Z","snapshot_observed_at":"2026-08-18T08:36:18.471554Z","submitted_at":"2026-01-26T04:31:07Z","title":"Heavy Quarkonium Spectrum and Decay Constants from a Neural-Network-Based Holographic Model","version":4},"reference_index":65,"source":"pdf_text","source_observed_at":"2026-08-03T08:12:16.600840Z"},"links":{"cited_paper":"/paper/2105.13761","citing_paper":"/paper/2601.18133"},"observation_digest":"sha256:9974447bf9360db141d433b43fd3063aed9722307e662017e92bf3280c1dc24f","observation_id":"27b057b3-78f1-47d1-949e-75a987417935","resolution":{"observed_at":"2026-08-03T08:12:16.600840Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}}],"links":{"evidence":"/evidence","html":"/paper/2105.13761/citation-record","integrity":"/paper/2105.13761/integrity","json":"/paper/2105.13761/citation-record.json","paper":"/paper/2105.13761"},"outbound":[],"paper":{"arxiv_id":"2105.13761","last_updated":"2021-06-17T07:54:27Z","latest_version":3,"primary_category":"hep-ph","snapshot_observed_at":"2026-08-19T08:33:28.274047Z","submitted_at":"2021-05-28T12:06:51Z","title":"Detecting Chiral Magnetic Effect via Deep Learning"},"reference_resolution":{"displayed":0,"state_counts":{"malformed_identifier":0,"metadata_mismatch":0,"parse_uncertain":0,"unresolved":0,"verified_exact":0,"verified_fuzzy":0},"total_outbound_references":0},"refusal":"A citation records a reference. It does not transfer a finding from one paper to another.","schema":"pith.paper-citation-record.v1","standing_sources":[{"observed_at":"2026-08-21T06:32:19.484+00:00","source":"crossref"},{"observed_at":"2026-08-21T06:32:16.066871+00:00","source":"retraction_watch"}],"thesis":"As of 21 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 2 inbound Pith citation observations for arXiv:2105.13761."}