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A longer candidate (10.22331/q-2024-03-14-1281) was visible in the surrounding text but could not be confirmed against doi.org as printed.","detected_doi":"10.22331/q-2024-03-14-1281","detected_arxiv_id":null,"ref_index":31,"audited_at":"2026-08-01T08:19:32.408354Z"},{"detector":"doi_compliance","finding_type":"recoverable_identifier","severity":"advisory","verdict_class":"incontrovertible","note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.1038/s41586-023-06927-3) was visible in the surrounding text but could not be confirmed against doi.org as printed.","detected_doi":"10.1038/s41586-023-06927-3","detected_arxiv_id":null,"ref_index":5,"audited_at":"2026-08-01T08:19:32.408354Z"},{"detector":"doi_compliance","finding_type":"recoverable_identifier","severity":"advisory","verdict_class":"incontrovertible","note":"DOI is split by whitespace or line breaks in the printed bibliography. Reconstructed DOI 10.1103/PhysRevA.100.032328 resolves to 'Validating quantum computers using randomized model circuits'. A reader following the printed text alone cannot reach it.","detected_doi":"10.1103/PhysRevA.100.032328","detected_arxiv_id":null,"ref_index":11,"audited_at":"2026-08-01T08:19:32.408354Z"},{"detector":"doi_compliance","finding_type":"recoverable_identifier","severity":"advisory","verdict_class":"incontrovertible","note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.22331/q-2020-09-21-327) was visible in the surrounding text but could not be confirmed against doi.org as printed.","detected_doi":"10.22331/q-2020-09-21-327","detected_arxiv_id":null,"ref_index":16,"audited_at":"2026-08-01T08:19:32.408354Z"},{"detector":"doi_compliance","finding_type":"recoverable_identifier","severity":"advisory","verdict_class":"incontrovertible","note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.1109/TCAD.2023.3261244) was visible in the surrounding text but could not be confirmed against doi.org as printed.","detected_doi":"10.1109/TCAD.2023.3261244","detected_arxiv_id":null,"ref_index":20,"audited_at":"2026-08-01T08:19:32.408354Z"}],"snapshot_sha256":"e66beb06ad567313b79b89d59ec9587a55c3c8add5a99d5ab5e4d6d8c1921c64"},"events":[{"event_id":15450,"event_type":"pith.integrity.v1","payload_sha256":"e68426df8850a9c3ff1b691db533bd9fc6ecb2d5a61f7f32e414bcaacf2ebbf0","signature_b64":"q/3nNUUzVKzxnTE14A1Wk8gvllKmYolHpMR/jI3rPtnwsMrnxxuUB4I/4Jfo3ZT6OewqVXZVek94zhXXnPo8Dw==","signing_key_id":"pith-v1-2026-05","created_at":"2026-08-01T08:23:33.790441+00:00","payload":{"note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.22331/q-2024-03-14-1281) was visible in the surrounding text but could not be confirmed against doi.org as printed.","snippet":"Bochen Tan, Dolev Bluvstein, Mikhail Lukin, and Jason Cong. 2024. Compiling Quantum Circuits for Dynamically Field-Programmable Neutral Atoms Array Processors.Quantum8 (March 2024), 1281. https://doi.org/10.22331/q-2024-03- 14-1281","arxiv_id":"2607.21216","detector":"doi_compliance","evidence":{"ref_index":31,"verdict_class":"incontrovertible","resolved_title":null,"printed_excerpt":"10.22331/q-2024-03-","reconstructed_doi":"10.22331/q-2024-03-14-1281"},"severity":"advisory","ref_index":31,"audited_at":"2026-08-01T08:19:32.408354Z","event_type":"pith.integrity.v1","detected_doi":"10.22331/q-2024-03-14-1281","detector_url":"https://pith.science/pith-integrity-protocol#doi_compliance","external_url":null,"finding_type":"recoverable_identifier","evidence_hash":"ccdfc167e137069ec772f8d0a6262145e70eb77263a04764b1963101e00eb218","paper_version":1,"verdict_class":"incontrovertible","resolved_title":null,"detector_version":"1.1.0","detected_arxiv_id":null}},{"event_id":15449,"event_type":"pith.integrity.v1","payload_sha256":"bb9c47f1b5dcd1cadb92b3cd0a8b8606a025adaac03b580deccc924949561273","signature_b64":"PcIAj/swZGbKFRFFvXrvStHQt42X2qVPhQcp/khTZeI7G8JIXFQtgnBbtsGDQDHB0W+UqKwQ+Gw4OTZTBbeTAQ==","signing_key_id":"pith-v1-2026-05","created_at":"2026-08-01T08:23:33.462300+00:00","payload":{"note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.1109/TCAD.2023.3261244) was visible in the surrounding text but could not be confirmed against doi.org as printed.","snippet":"Yongshang Li, Yu Zhang, Mingyu Chen, Xiangyang Li, and Peng Xu. 2023. Timing- Aware Qubit Mapping and Gate Scheduling Adapted to Neutral Atom Quantum Computing.IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems42,","arxiv_id":"2607.21216","detector":"doi_compliance","evidence":{"ref_index":20,"verdict_class":"incontrovertible","resolved_title":null,"printed_excerpt":"10.1109/tcad.2023","reconstructed_doi":"10.1109/TCAD.2023.3261244"},"severity":"advisory","ref_index":20,"audited_at":"2026-08-01T08:19:32.408354Z","event_type":"pith.integrity.v1","detected_doi":"10.1109/TCAD.2023.3261244","detector_url":"https://pith.science/pith-integrity-protocol#doi_compliance","external_url":null,"finding_type":"recoverable_identifier","evidence_hash":"3f6581520859daf617d5252eef8560b6982091550d39a686b172c029cdb94f68","paper_version":1,"verdict_class":"incontrovertible","resolved_title":null,"detector_version":"1.1.0","detected_arxiv_id":null}},{"event_id":15448,"event_type":"pith.integrity.v1","payload_sha256":"97110a1b44a575a8c1af2ac7733537b5acabfd1a6613f3c8e0cb6bd36d22cf9d","signature_b64":"hA0yYCRm0hMfQdt0hY8MjcPAmpmX9NNGieLf7FL0QWCLwbiRro93V4VCnUZqao6pv2I+4k1FV3YEJXKp13IQDg==","signing_key_id":"pith-v1-2026-05","created_at":"2026-08-01T08:23:33.049258+00:00","payload":{"note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.22331/q-2020-09-21-327) was visible in the surrounding text but could not be confirmed against doi.org as printed.","snippet":"Loïc Henriet, Lucas Beguin, Adrien Signoles, Thierry Lahaye, Antoine Browaeys, Georges-Olivier Reymond, and Christophe Jurczak. 2020. Quantum Computing with Neutral Atoms.Quantum4 (Sept. 2020), 327. https://doi.org/10.22331/q- 2020-09-21-32","arxiv_id":"2607.21216","detector":"doi_compliance","evidence":{"ref_index":16,"verdict_class":"incontrovertible","resolved_title":null,"printed_excerpt":"10.22331/q-","reconstructed_doi":"10.22331/q-2020-09-21-327"},"severity":"advisory","ref_index":16,"audited_at":"2026-08-01T08:19:32.408354Z","event_type":"pith.integrity.v1","detected_doi":"10.22331/q-2020-09-21-327","detector_url":"https://pith.science/pith-integrity-protocol#doi_compliance","external_url":null,"finding_type":"recoverable_identifier","evidence_hash":"71bd0b77cbf471e20eebab873a3fdd0befa69f7c43c27717c5a7fe5a6171957d","paper_version":1,"verdict_class":"incontrovertible","resolved_title":null,"detector_version":"1.1.0","detected_arxiv_id":null}},{"event_id":15447,"event_type":"pith.integrity.v1","payload_sha256":"677213201f5c82cba7798a14c5c42428e2b4c34ba929a2ca6dd6e163db2693c9","signature_b64":"4ssjdGqpsO07KVxUne1YqiLuru7WyBf45WTeFxzwDxR6lrAWlGJRBtW8GiII1IHX2nzu2mv+ngTCqyVrhPc1BQ==","signing_key_id":"pith-v1-2026-05","created_at":"2026-08-01T08:23:32.856210+00:00","payload":{"note":"DOI is split by whitespace or line breaks in the printed bibliography. Reconstructed DOI 10.1103/PhysRevA.100.032328 resolves to 'Validating quantum computers using randomized model circuits'. A reader following the printed text alone cannot reach it.","snippet":"Andrew W. Cross, Lev S. Bishop, Sarah Sheldon, Paul D. Nation, and Jay M. Gambetta. 2019. Validating quantum computers using randomized model circuits. Physical Review A100, 3 (Sept. 2019), 032328. https://doi.org/10.1103/PhysRevA. 100.0323","arxiv_id":"2607.21216","detector":"doi_compliance","evidence":{"ref_index":11,"verdict_class":"incontrovertible","resolved_title":"Validating quantum computers using randomized model circuits","printed_excerpt":"10.1103/physreva","reconstructed_doi":"10.1103/PhysRevA.100.032328"},"severity":"advisory","ref_index":11,"audited_at":"2026-08-01T08:19:32.408354Z","event_type":"pith.integrity.v1","detected_doi":"10.1103/PhysRevA.100.032328","detector_url":"https://pith.science/pith-integrity-protocol#doi_compliance","external_url":null,"finding_type":"recoverable_identifier","evidence_hash":"671decb5ac39f72f569ae463397a042f275e188491d1061fd5abee4e0b371d3f","paper_version":1,"verdict_class":"incontrovertible","resolved_title":"Validating quantum computers using randomized model circuits","detector_version":"1.1.0","detected_arxiv_id":null}},{"event_id":15446,"event_type":"pith.integrity.v1","payload_sha256":"adaf9867079dc539c44a2ab46d2baf3be88e1dab0f5c82d272e3cfcdf653baed","signature_b64":"KiY5jbDMDQnByMwcSCLsZgQSWGPMC6I8vOEPtv9bQWbCZPYylYtTql554wTVg1aJylHj2BL46vYN4LHDwjBZBw==","signing_key_id":"pith-v1-2026-05","created_at":"2026-08-01T08:23:32.719053+00:00","payload":{"note":"DOI in the printed bibliography is fragmented by whitespace or line breaks. A longer candidate (10.1038/s41586-023-06927-3) was visible in the surrounding text but could not be confirmed against doi.org as printed.","snippet":"Dolev Bluvstein, Simon J. Evered, Alexandra A. Geim, Sophie H. Li, Hengyun Zhou, Tom Manovitz, Sepehr Ebadi, Madelyn Cain, Marcin Kalinowski, Dominik Hangleiter, J. Pablo Bonilla Ataides, Nishad Maskara, Iris Cong, Xun Gao, Pe- dro Sales Ro","arxiv_id":"2607.21216","detector":"doi_compliance","evidence":{"ref_index":5,"verdict_class":"incontrovertible","resolved_title":null,"printed_excerpt":"10.1038/s41586-023-0","reconstructed_doi":"10.1038/s41586-023-06927-3"},"severity":"advisory","ref_index":5,"audited_at":"2026-08-01T08:19:32.408354Z","event_type":"pith.integrity.v1","detected_doi":"10.1038/s41586-023-06927-3","detector_url":"https://pith.science/pith-integrity-protocol#doi_compliance","external_url":null,"finding_type":"recoverable_identifier","evidence_hash":"acd10df2c5ce6d86286ea72cfdcc15e11daeba6f204b0822ffed6496e34caa54","paper_version":1,"verdict_class":"incontrovertible","resolved_title":null,"detector_version":"1.1.0","detected_arxiv_id":null}}],"endpoint_self":"/pith/2607.21216/integrity.json","protocol_url":"https://pith.science/pith-integrity-protocol"}