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dc.contributor.authorKronholm, Risto
dc.contributor.authorKalvas, Taneli
dc.contributor.authorKoivisto, Hannu
dc.contributor.authorLaulainen, Janne
dc.contributor.authorMarttinen, Miha
dc.contributor.authorSakildien, Muneer
dc.contributor.authorTarvainen, Olli
dc.date.accessioned2019-07-29T08:49:24Z
dc.date.available2020-07-26T21:35:08Z
dc.date.issued2019
dc.identifier.citationKronholm, R., Kalvas, T., Koivisto, H., Laulainen, J., Marttinen, M., Sakildien, M., & Tarvainen, O. (2019). Spectroscopic study of ion temperature in minimum-B ECRIS plasma. <i>Plasma Sources Science and Technology</i>, <i>28</i>(7), 075006. <a href="https://doi.org/10.1088/1361-6595/ab27a1" target="_blank">https://doi.org/10.1088/1361-6595/ab27a1</a>
dc.identifier.otherCONVID_31223477
dc.identifier.otherTUTKAID_81715
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/65136
dc.description.abstractExperimentally determined ion temperatures of different charge states and elements in minimum-B confined electron cyclotron resonance ion source (ECRIS) plasma are reported. It is demonstrated with optical emission spectroscopy, complemented by the energy spread measurements of the extracted ion beams, that the ion temperature in the JYFL 14 GHz ECRIS is 5–28 eV depending on the plasma species and charge state. The reported ion temperatures are an order of magnitude higher than previously deduced from indirect diagnostics and used in simulations, but agree with those reported for a quadrupole mirror fusion experiment. The diagnostics setup and data interpretation are discussed in detail to demonstrate adequate understanding of the line broadening mechanisms and instrumental effects, which justifies the use of the measured Doppler broadening of the emission lines to derive the corresponding ion temperature. The ion temperatures of the high charge state plasma of the minimum-B ECRIS are compared to those measured from low temperature singly charged microwave and arc discharge plasmas to exclude systematic errors. The ion temperatures in the minimum-B ECRIS plasmas are shown to increase with the charge state and injected microwave power whereas two-frequency heating and plasma instabilities have only a minor effect on them. Possible mechanisms causing the higher-than-expected ion temperatures are hypothesized and assessed based on the reported experimental data. Finally, the implications of the results are discussed, demonstrating the need for further experiments especially with charge breeder ECR ion sources, and experimental data on ion confinement times.fi
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherInstitute of Physics Publishing Ltd.
dc.relation.ispartofseriesPlasma Sources Science and Technology
dc.rightsIn Copyright
dc.subject.otherspectroscopic study
dc.subject.otherion temperature
dc.titleSpectroscopic study of ion temperature in minimum-B ECRIS plasma
dc.typearticle
dc.identifier.urnURN:NBN:fi:jyu-201907293690
dc.contributor.laitosFysiikan laitosfi
dc.contributor.laitosDepartment of Physicsen
dc.contributor.oppiaineKiihdytinlaboratoriofi
dc.contributor.oppiaineAccelerator Laboratoryen
dc.type.urihttp://purl.org/eprint/type/JournalArticle
dc.date.updated2019-07-29T06:15:12Z
dc.type.coarhttp://purl.org/coar/resource_type/c_2df8fbb1
dc.description.reviewstatuspeerReviewed
dc.format.pagerange075006
dc.relation.issn0963-0252
dc.relation.numberinseries7
dc.relation.volume28
dc.type.versionacceptedVersion
dc.rights.copyright© 2019 IOP Publishing Ltd.
dc.rights.accesslevelopenAccessfi
dc.relation.grantnumber315855
dc.relation.grantnumber654002
dc.relation.grantnumber654002
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/H2020/654002/EU//
dc.subject.ysospektroskopia
dc.subject.ysoionit
dc.subject.ysolämpötila
dc.format.contentfulltext
jyx.subject.urihttp://www.yso.fi/onto/yso/p10176
jyx.subject.urihttp://www.yso.fi/onto/yso/p9015
jyx.subject.urihttp://www.yso.fi/onto/yso/p2100
dc.rights.urlhttp://rightsstatements.org/page/InC/1.0/?language=en
dc.relation.doi10.1088/1361-6595/ab27a1
dc.relation.funderSuomen Akatemiafi
dc.relation.funderEuroopan komissiofi
dc.relation.funderResearch Council of Finlanden
dc.relation.funderEuropean Commissionen
jyx.fundingprogramAkatemiahanke, SAfi
jyx.fundingprogramResearch infrastructures, H2020fi
jyx.fundingprogramAcademy Project, AoFen
jyx.fundingprogramResearch infrastructures, H2020en
jyx.fundinginformationThe project has received funding from the European Unionʼs Horizon 2020 research and innovation programme under grant agreement No. 654002 and the Academy of Finland under the Finnish Centre of Excellence Programme 2012–2017 (Nuclear and Accelerator Based Physics Research at JYFL, Project No. 213503) and the Academy of Finland Project funding (No. 315855).
dc.type.okmA1


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