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The radioactive nuclei and in the Cosmos and in the solar system

dc.contributor.authorDiehl, R
dc.contributor.authorLugaro, Maria
dc.contributor.authorHeger, Alexander
dc.contributor.authorSieverding, Andre
dc.contributor.authorTang, X
dc.contributor.authorLi, Kuoang
dc.contributor.authorLi, E.T.
dc.contributor.authorDoherty, Carolyn L
dc.contributor.authorKrause, Martin G. H.
dc.contributor.authorWallner, Anton
dc.contributor.authorPrantzos, N
dc.date.accessioned2024-03-18T23:18:04Z
dc.date.available2024-03-18T23:18:04Z
dc.date.issued2021
dc.date.updated2022-11-13T07:17:11Z
dc.description.abstractThe cosmic evolution of the chemical elements from the Big Bang to the present time is driven by nuclear fusion reactions inside stars and stellar explosions. A cycle of matter recurrently re-processes metal-enriched stellar ejecta into the next generation of stars. The study of cosmic nucleosynthesis and this matter cycle requires the understanding of the physics of nuclear reactions, of the conditions at which the nuclear reactions are activated inside the stars and stellar explosions, of the stellar ejection mechanisms through winds and explosions, and of the transport of the ejecta towards the next cycle, from hot plasma to cold, star-forming gas. Due to the long timescales of stellar evolution, and because of the infrequent occurrence of stellar explosions, observational studies are challenging, as they have biases in time and space as well as different sensitivities related to the various astronomical methods. Here, we describe in detail the astrophysical and nuclear-physical processes involved in creating two radioactive isotopes useful in such studies, and. Due to their radioactive lifetime of the order of a million years, these isotopes are suitable to characterise simultaneously the processes of nuclear fusion reactions and of interstellar transport. We describe and discuss the nuclear reactions involved in the production and destruction of and, the key characteristics of the stellar sites of their nucleosynthesis and their interstellar journey after ejection from the nucleosynthesis sites. This allows us to connect the theoretical astrophysical aspects to the variety of astronomical messengers presented here, from stardust and cosmic-ray composition measurements, through observation of rays produced by radioactivity, to material deposited in deep-sea ocean crusts and to the inferred composition of the first solids that have formed in the Solar System. We show that considering measurements of the isotopic ratio of to eliminate some of the unknowns when interpreting astronomical results, and discuss the lessons learned from these two isotopes on cosmic chemical evolution. This review paper has emerged from an ISSI-BJ Team project in 2017-2019, bringing together nuclear physicists, astronomers, and astrophysicists in this inter-disciplinary discussion.en_AU
dc.description.sponsorshipThis work is supported by the ERC via CoG-2016 RADIOSTAR [11] (Grant Agreement 724560) and from work within the “ChETEC” COST Action (CA16117), funded by the COST program (European Cooperation in Science and Technology). A.S. acknowledges supportbythe USDepartmentofEnergy [DE-FG02-87ER40328 (UM)]. A.H. acknowledges support by the Australian Research Council (ARC) Centre of Excellence (CoE) for Gravitational Wave Discovery (OzGrave) project number CE170100004, by the ARC CoE for All Sky Astrophysics in 3 Dimensions (ASTRO 3D) project number CE170100013, and US National Science Foundation under Grant No. PHY-1430152 (JINA Center for the Evolution of the Elements).en_AU
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn1323-3580en_AU
dc.identifier.urihttp://hdl.handle.net/1885/316096
dc.language.isoen_AUen_AU
dc.provenanceThis is an Open Access article, distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlikelicence(https ://creativecommons.org/licenses/by-nc-sa/4.0/),which permits non-commercialre-use, distribution,and reproduction in any medium, provided the same Creative Commons licence is included and the original work is properly cited. The written permission of Cambridge University Press must be obtained for commercial re-use.en_AU
dc.publisherCSLI Publicationsen_AU
dc.relationhttp://purl.org/au-research/grants/arc/CE170100004en_AU
dc.relationhttp://purl.org/au-research/grants/arc/CE170100013en_AU
dc.rights© The Author(s), 2021. Published by Cambridge University Press on behalf of the Astronomical Society of Australia.en_AU
dc.rights.licenseCreative Commons Attribution-NonCommercial-ShareAlikelicenceen_AU
dc.rights.urihttps ://creativecommons.org/licenses/by-nc-sa/4.0/en_AU
dc.sourcePublications of the Astronomical Society of Australiaen_AU
dc.subjectnucleosynthesisen_AU
dc.subjectisotopeen_AU
dc.subjectnucleus:reactionen_AU
dc.subjectstars:evolutionen_AU
dc.subjectinterstellar mediumen_AU
dc.titleThe radioactive nuclei and in the Cosmos and in the solar systemen_AU
dc.typeJournal articleen_AU
dcterms.accessRightsOpen Accessen_AU
local.bibliographicCitation.lastpage42en_AU
local.bibliographicCitation.startpage1en_AU
local.contributor.affiliationDiehl, R, Max-Planck-Institut für extraterrestrische Physiken_AU
local.contributor.affiliationLugaro, Maria, Monash Universityen_AU
local.contributor.affiliationHeger, Alexander, Monash Universityen_AU
local.contributor.affiliationSieverding, Andre, University of Minnesotaen_AU
local.contributor.affiliationTang, X, Chinese Academy of Sciencesen_AU
local.contributor.affiliationLi, Kuoang, Chinese Academy of Sciencesen_AU
local.contributor.affiliationLi, E.T., Shenzhen Universityen_AU
local.contributor.affiliationDoherty, Carolyn L, Monash Universityen_AU
local.contributor.affiliationKrause, Martin G. H., University of Hertfordshireen_AU
local.contributor.affiliationWallner, Anton, College of Science, ANUen_AU
local.contributor.affiliationPrantzos, N, Université P. & M. Curieen_AU
local.contributor.authoruidWallner, Anton, u5124538en_AU
local.description.notesImported from ARIESen_AU
local.identifier.absfor510600 - Nuclear and plasma physicsen_AU
local.identifier.absseo280120 - Expanding knowledge in the physical sciencesen_AU
local.identifier.ariespublicationa383154xPUB23357en_AU
local.identifier.citationvolume38en_AU
local.identifier.doi10.1017/pasa.2021.48en_AU
local.identifier.scopusID2-s2.0-85121318836
local.publisher.urlhttps://www.cambridge.org/core/journals/publications-of-the-astronomical-society-of-australiaen_AU
local.type.statusPublished Versionen_AU

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