{"paper":{"title":"Advances in laser-assisted nuclear decay and nuclear excitation","license":"http://creativecommons.org/licenses/by/4.0/","headline":"Lasers assist nuclear decays and induce excitations in nuclei like 229Th via new models and experiments.","cross_cats":["nucl-th"],"primary_cat":"physics.plasm-ph","authors_text":"A. Ya. Dzyublik, J. H. Cheng, Q. Xiao, T. P. Yu, Y. T. Zou, Y. Y. Xu, Z. Z. Ren","submitted_at":"2026-05-15T14:47:24Z","abstract_excerpt":"From the synthesis and evolution of the elements to the celestial nuclear processes of stellar explosions and neutron star mergers, nuclear physics is the foundation of our understanding of the universe. After more than a century of progress, the field of nuclear physics remains vibrant. The rapid advancement of laser technology has opened unprecedented avenues in nuclear physics, driven by the interdisciplinary convergence of laser physics, nuclear structure, plasma science, and quantum dynamics. This emerging field enables studies on laser-induced nuclear excitation, laser assisted nuclear d"},"claims":{"count":4,"items":[{"kind":"strongest_claim","text":"This emerging field enables studies on laser-induced nuclear excitation, laser assisted nuclear decay, and precision manipulation of nuclear isomers for optical clocks.","source":"verdict.strongest_claim","status":"machine_extracted","claim_id":"C1","attestation":"unclaimed"},{"kind":"weakest_assumption","text":"The review assumes that the cited theoretical models (TDSE for decays, Fermi's golden rule for excitation) and the reported experimental breakthroughs on 229Th, 83Kr, and 45Sc accurately capture the current state of the field without significant omissions or errors in the underlying literature.","source":"verdict.weakest_assumption","status":"machine_extracted","claim_id":"C2","attestation":"unclaimed"},{"kind":"one_line_summary","text":"Lasers influence alpha decay, proton radioactivity, and nuclear excitations in isotopes such as 229Th, 83Kr, and 45Sc through methods including the time-dependent Schrödinger equation and Fermi's golden rule.","source":"verdict.one_line_summary","status":"machine_extracted","claim_id":"C3","attestation":"unclaimed"},{"kind":"headline","text":"Lasers assist nuclear decays and induce excitations in nuclei like 229Th via new models and experiments.","source":"verdict.pith_extraction.headline","status":"machine_extracted","claim_id":"C4","attestation":"unclaimed"}],"snapshot_sha256":"94eafc70c40e3a89ad70a16f396870b907629a9bc6be9a7903fc4da8a1abbe2e"},"source":{"id":"2605.16014","kind":"arxiv","version":1},"verdict":{"id":"ab10e2ee-bab3-4dac-a5e6-20258cac4d00","model_set":{"reader":"grok-4.3"},"created_at":"2026-05-19T19:04:02.191375Z","strongest_claim":"This emerging field enables studies on laser-induced nuclear excitation, laser assisted nuclear decay, and precision manipulation of nuclear isomers for optical clocks.","one_line_summary":"Lasers influence alpha decay, proton radioactivity, and nuclear excitations in isotopes such as 229Th, 83Kr, and 45Sc through methods including the time-dependent Schrödinger equation and Fermi's golden rule.","pipeline_version":"pith-pipeline@v0.9.0","weakest_assumption":"The review assumes that the cited theoretical models (TDSE for decays, Fermi's golden rule for excitation) and the reported experimental breakthroughs on 229Th, 83Kr, and 45Sc accurately capture the current state of the field without significant omissions or errors in the underlying literature.","pith_extraction_headline":"Lasers assist nuclear decays and induce excitations in nuclei like 229Th via new models and experiments."},"integrity":{"clean":false,"summary":{"advisory":1,"critical":3,"by_detector":{"doi_compliance":{"total":4,"advisory":1,"critical":3,"informational":0}},"informational":0},"endpoint":"/pith/2605.16014/integrity.json","findings":[{"note":"Identifier '10.1063/5.0212163/20102150/055201_1_5.0212163.pdf' is syntactically valid but the DOI registry (doi.org) returned 404, and Crossref / OpenAlex / internal corpus also have no record. 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