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dc.contributor.authorVernon, A. R.
dc.contributor.authorde Groote, Ruben
dc.contributor.authorBillowes, J.
dc.contributor.authorBinnersley, C. L.
dc.contributor.authorCocolios, T. E.
dc.contributor.authorFarooq-Smith, G. J.
dc.contributor.authorFlanagan, K. T.
dc.contributor.authorRuiz, R. F. Garcia
dc.contributor.authorGins, W.
dc.contributor.authorKoszorús, Á.
dc.contributor.authorNeyens, G.
dc.contributor.authorRicketts, C. M.
dc.contributor.authorSmith, A. J.
dc.contributor.authorWilkins, S. G.
dc.contributor.authorYang, X. F.
dc.date.accessioned2021-05-24T09:39:39Z
dc.date.available2021-05-24T09:39:39Z
dc.date.issued2020
dc.identifier.citationVernon, A. R., de Groote, R., Billowes, J., Binnersley, C. L., Cocolios, T. E., Farooq-Smith, G. J., Flanagan, K. T., Ruiz, R. F. G., Gins, W., Koszorús, Á., Neyens, G., Ricketts, C. M., Smith, A. J., Wilkins, S. G., & Yang, X. F. (2020). Optimising the Collinear Resonance Ionisation Spectroscopy (CRIS) experiment at CERN-ISOLDE. <i>Nuclear Instruments and Methods in Physics Research. Section B: Beam Interactions with Materials and Atoms</i>, <i>463</i>, 384-389. <a href="https://doi.org/10.1016/j.nimb.2019.04.049" target="_blank">https://doi.org/10.1016/j.nimb.2019.04.049</a>
dc.identifier.otherCONVID_30606286
dc.identifier.otherTUTKAID_81331
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/75885
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherElsevier BV
dc.relation.ispartofseriesNuclear Instruments and Methods in Physics Research. Section B: Beam Interactions with Materials and Atoms
dc.rightsCC BY-NC-ND 4.0
dc.subject.othercollinear resonance ionization spectroscopy
dc.subject.otherCRIS
dc.subject.otherCERN-ISOLDE
dc.subject.otherlaser spectroscopy
dc.subject.otherhigh-resolution
dc.subject.otherhyperfine structure
dc.titleOptimising the Collinear Resonance Ionisation Spectroscopy (CRIS) experiment at CERN-ISOLDE
dc.typearticle
dc.identifier.urnURN:NBN:fi:jyu-202105243144
dc.contributor.laitosFysiikan laitosfi
dc.contributor.laitosDepartment of Physicsen
dc.contributor.oppiaineFysiikkafi
dc.contributor.oppiaineKiihdytinlaboratoriofi
dc.contributor.oppiainePhysicsen
dc.contributor.oppiaineAccelerator Laboratoryen
dc.type.urihttp://purl.org/eprint/type/JournalArticle
dc.type.coarhttp://purl.org/coar/resource_type/c_2df8fbb1
dc.description.reviewstatuspeerReviewed
dc.format.pagerange384-389
dc.relation.issn0168-583X
dc.relation.numberinseries0
dc.relation.volume463
dc.type.versionacceptedVersion
dc.rights.copyright© 2019 Elsevier B.V. All rights reserved.
dc.rights.accesslevelopenAccessfi
dc.relation.grantnumber654002
dc.relation.grantnumber654002
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/H2020/654002/EU//
dc.subject.ysotutkimuslaitteet
dc.subject.ysoydinfysiikka
dc.subject.ysospektroskopia
dc.format.contentfulltext
jyx.subject.urihttp://www.yso.fi/onto/yso/p2440
jyx.subject.urihttp://www.yso.fi/onto/yso/p14759
jyx.subject.urihttp://www.yso.fi/onto/yso/p10176
dc.rights.urlhttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.relation.doi10.1016/j.nimb.2019.04.049
dc.relation.funderEuropean Commissionen
dc.relation.funderEuroopan komissiofi
jyx.fundingprogramResearch infrastructures, H2020en
jyx.fundingprogramResearch infrastructures, H2020fi
jyx.fundinginformationThis work was supported by ERC Consolidator Grant No. 648381 (FNPMLS); STFC grants ST/L005794/1 and ST/L005786/1 and Ernest Rutherford Grant No. ST/L002868/1; GOA 15/010 from KU Leuven; BriX Research Program No. P7/12; the FWO-Vlaanderen (Belgium); Belgian Federal Science Policy Office (BELSPO); the European Unions Seventh Framework Programme for Research and Technological Development under Grant Agreement 654002 (ENSAR2); National Key R&D Program of China (Contract No: 2018YFA0404403), the National Natural Science Foundation of China (No: 11875073) and we acknowledge the financial aid of the Ed Schneiderman Fund at New York University. We would also like to thank the ISOLDE collaboration and technical teams for their support.
dc.type.okmA1


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