{"record_type":"pith_number_record","schema_url":"https://pith.science/schemas/pith-number/v1.json","pith_number":"pith:2026:TCBWFNF4HBJS3SLDGKRHBBXTK5","short_pith_number":"pith:TCBWFNF4","schema_version":"1.0","canonical_sha256":"988362b4bc38532dc96332a27086f35775dcdec5b5181ce01360e6bc524dc0d5","source":{"kind":"arxiv","id":"2608.07156","version":1},"attestation_state":"computed","paper":{"title":"Charge-state dynamics of barium ions in high-pressure xenon and its implications for Barium-Tagging in $0\\nu\\beta\\beta$ searches","license":"http://creativecommons.org/licenses/by/4.0/","headline":"","cross_cats":["nucl-ex"],"primary_cat":"physics.atom-ph","authors_text":"A. Peralta Conde","submitted_at":"2026-08-07T12:23:01Z","abstract_excerpt":"Barium tagging (BaTa) is one of the most promising techniques for achieving a nearly background-free search for neutrinoless double-beta decay ($0\\nu\\beta\\beta$) in high-pressure xenon time detection chambers. However, the experimental implementation of BaTa depends critically on the chage-state dynamics of the daughter Ba$^{2+}$ ion produced in the nuclear decay event. In this work, I review the possible recombination channels and evaluate their physical viability. The obtained results indicate that although binary recombination channels are strongly suppressed, three-body recombination assis"},"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":"2608.07156","kind":"arxiv","version":1},"metadata":{"license":"http://creativecommons.org/licenses/by/4.0/","primary_cat":"physics.atom-ph","submitted_at":"2026-08-07T12:23:01Z","cross_cats_sorted":["nucl-ex"],"title_canon_sha256":"9b34ca2ca205642cc2bfbeae669c7ace71d9043fa9fa23ef2dcc1834cb905674","abstract_canon_sha256":"ae0f7d52fd3dd71fd7cd37423d8fe2216c478db3ffeeb84e059807ddfdac9800"},"schema_version":"1.0"},"receipt":{"kind":"pith_receipt","key_id":"pith-v1-2026-05","algorithm":"ed25519","signed_at":"2026-08-10T01:14:28.560045Z","signature_b64":"wiY2gheUak9wjCa7p+yT1Y5TqdsHn1ACrdPlh0V64l2Z/Gp1QhT59Z48qNElaQ+4cZ3l0eeFgEPeqB1hR2PhCA==","signed_message":"canonical_sha256_bytes","builder_version":"pith-number-builder-2026-05-17-v1","receipt_version":"0.3","canonical_sha256":"988362b4bc38532dc96332a27086f35775dcdec5b5181ce01360e6bc524dc0d5","last_reissued_at":"2026-08-10T01:14:28.557672Z","signature_status":"signed_v1","first_computed_at":"2026-08-10T01:14:28.557672Z","public_key_fingerprint":"8d4b5ee74e4693bcd1df2446408b0d54"},"graph_snapshot":{"paper":{"title":"Charge-state dynamics of barium ions in high-pressure xenon and its implications for Barium-Tagging in $0\\nu\\beta\\beta$ searches","license":"http://creativecommons.org/licenses/by/4.0/","headline":"","cross_cats":["nucl-ex"],"primary_cat":"physics.atom-ph","authors_text":"A. Peralta Conde","submitted_at":"2026-08-07T12:23:01Z","abstract_excerpt":"Barium tagging (BaTa) is one of the most promising techniques for achieving a nearly background-free search for neutrinoless double-beta decay ($0\\nu\\beta\\beta$) in high-pressure xenon time detection chambers. However, the experimental implementation of BaTa depends critically on the chage-state dynamics of the daughter Ba$^{2+}$ ion produced in the nuclear decay event. In this work, I review the possible recombination channels and evaluate their physical viability. The obtained results indicate that although binary recombination channels are strongly suppressed, three-body recombination assis"},"claims":{"count":0,"items":[],"snapshot_sha256":"258153158e38e3291e3d48162225fcdb2d5a3ed65a07baac614ab91432fd4f57"},"source":{"id":"2608.07156","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/2608.07156/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":"2608.07156","created_at":"2026-08-10T01:14:28.558661+00:00"},{"alias_kind":"arxiv_version","alias_value":"2608.07156v1","created_at":"2026-08-10T01:14:28.558661+00:00"},{"alias_kind":"doi","alias_value":"10.48550/arxiv.2608.07156","created_at":"2026-08-10T01:14:28.558661+00:00"},{"alias_kind":"pith_short_12","alias_value":"TCBWFNF4HBJS","created_at":"2026-08-10T01:14:28.558661+00:00"},{"alias_kind":"pith_short_16","alias_value":"TCBWFNF4HBJS3SLD","created_at":"2026-08-10T01:14:28.558661+00:00"},{"alias_kind":"pith_short_8","alias_value":"TCBWFNF4","created_at":"2026-08-10T01:14:28.558661+00:00"}],"events":[],"event_summary":{},"paper_claims":[],"inbound_citations":{"count":1,"internal_anchor_count":1,"sample":[{"citing_arxiv_id":"2608.07156","citing_title":"Charge-state dynamics of barium ions in high-pressure xenon and its implications for Barium-Tagging in $0\\nu\\beta\\beta$ searches","ref_index":1,"is_internal_anchor":true}]},"formal_canon":{"evidence_count":0,"sample":[],"anchors":[]},"links":{"html":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5","json":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5.json","graph_json":"https://pith.science/api/pith-number/TCBWFNF4HBJS3SLDGKRHBBXTK5/graph.json","events_json":"https://pith.science/api/pith-number/TCBWFNF4HBJS3SLDGKRHBBXTK5/events.json","paper":"https://pith.science/paper/TCBWFNF4"},"agent_actions":{"view_html":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5","download_json":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5.json","view_paper":"https://pith.science/paper/TCBWFNF4","resolve_alias":"https://pith.science/api/pith-number/resolve?arxiv=2608.07156&json=true","fetch_graph":"https://pith.science/api/pith-number/TCBWFNF4HBJS3SLDGKRHBBXTK5/graph.json","fetch_events":"https://pith.science/api/pith-number/TCBWFNF4HBJS3SLDGKRHBBXTK5/events.json","actions":{"anchor_timestamp":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5/action/timestamp_anchor","attest_storage":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5/action/storage_attestation","attest_author":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5/action/author_attestation","sign_citation":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5/action/citation_signature","submit_replication":"https://pith.science/pith/TCBWFNF4HBJS3SLDGKRHBBXTK5/action/replication_record"}},"created_at":"2026-08-10T01:14:28.558661+00:00","updated_at":"2026-08-10T01:14:28.558661+00:00"}