SuperTIGER instrument abundances of galactic cosmic rays for the charge interval 41⩽Z⩽56

dc.contributor.authorWalsh, Nathan Elliot
dc.contributor.authorAkaike, Yosui
dc.contributor.authorBinns, Walter Robert
dc.contributor.authorBose, Richard G.
dc.contributor.authorCannady, Nicholas
dc.contributor.authorHams, Thomas
dc.contributor.authorKrizmanic, John F.
dc.contributor.authorSakai, Kenichi
dc.contributor.authoret al
dc.date.accessioned2022-08-09T17:48:11Z
dc.date.available2022-08-09T17:48:11Z
dc.date.issued2022-05-10
dc.descriptionAuthor: Nathan Elliot Walsh, Yosui Akaike, Walter Robert Binns, Richard G. Bose, Terri J.Brandt, Dana L. Braun, Nicholas W. Cannady, Paul F. Dowkontt, Thomas Hams, Martin H. Israel, John F. Krizmanic, Allan W. Labrador, Richard A. Mewaldt, John W. Mitchell, Ryan P. Murphy, Georgia A. de Nolfo, Scott Nutter, Martin A. Olevitch, Brian. F. Rauch, Kenichi Sakai, Makoto Sasaki, Garry E. Simburger, Ed C. Stone, Teresa Tatoli, John Ennis Ward, Mark E. Wiedenbeck, Wolfgang V. Zoberen_US
dc.description.abstractWe report preliminary elemental abundance results from the 55-day long-duration-balloon flight of SuperTIGER (Super Trans-Iron Galactic Element Recorder) during the 2012–2013 austral summer. SuperTIGER measured the relative abundances of Galactic cosmic-ray (GCR) nuclei with high statistical precision and well resolved individual element peaks from 10Ne to 40Zr. SuperTIGER also made exploratory measurements of the relative abundances up to 56Ba. Although the statistics are low for elements heavier than 40Zr, we present, for the first time, relative abundance measurements of charges with individual element resolution. GCR measurements up to 40Zr support a source acceleration model where supernovae in OB associations preferentially accelerate refractory elements that are more readily embedded in interstellar dust grains than volatiles. In addition, injection into the GCR for both refractory and volatile elements appears to follow a charge dependence consistent with their grain sputtering cross sections. By extending the GCR measurement range past 40Zr, we can begin to further constrain these models.en_US
dc.description.sponsorshipThis research was supported by NASA under grants NNX09AC17G, NNX14AB25G, NNX15AC23G and 80NSSC20K0405, by the McDonnell Center for the Space Sciences at Washington University, and by the Peggy and Steve Fossett Foundation. We thank the NASA Columbia Scientific Balloon Facility, the NASA Balloon Program Office, and the NSF United States Antarctic Program for the excellent and highly professional efforts that resulted in two successful long-duration balloon flights for SuperTIGER.en_US
dc.description.urihttps://www.sciencedirect.com/science/article/pii/S0273117722003404?via%3Dihuben_US
dc.format.extent8 pagesen_US
dc.genrejournal articlesen_US
dc.genrepostprintsen_US
dc.identifierdoi:10.13016/m2havv-1id9
dc.identifier.citationN. E. Walsh, Y. Akaike, W. R. Binns et al., SuperTIGER instrument abundances of galactic cosmic rays for the charge interval 41⩽Z⩽56, Advances in Space Research, https://doi.org/10.1016/j.asr.2022.04.063en_US
dc.identifier.urihttps://doi.org/10.1016/j.asr.2022.04.063
dc.identifier.urihttp://hdl.handle.net/11603/25324
dc.language.isoen_USen_US
dc.publisherElsevieren_US
dc.relation.isAvailableAtThe University of Maryland, Baltimore County (UMBC)
dc.relation.ispartofUMBC Center for Space Sciences and Technology
dc.relation.ispartofUMBC Faculty Collection
dc.rightsThis work was written as part of one of the author's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 U.S.C. 105, no copyright protection is available for such works under U.S. Law.en_US
dc.rightsPublic Domain Mark 1.0*
dc.rights.urihttp://creativecommons.org/publicdomain/mark/1.0/*
dc.titleSuperTIGER instrument abundances of galactic cosmic rays for the charge interval 41⩽Z⩽56en_US
dc.typeTexten_US
dcterms.creatorhttps://orcid.org/0000-0003-2916-6955en_US

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