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dc.contributor.authorRichey-Yowell, T.
dc.contributor.authorShkolnik, E.L.
dc.contributor.authorLoyd, R.O.P.
dc.contributor.authorJackman, J.A.G.
dc.contributor.authorSchneider, A.C.
dc.contributor.authorAgüeros, M.A.
dc.contributor.authorBarman, T.
dc.contributor.authorMeadows, V.S.
dc.contributor.authorGibson, R.
dc.contributor.authorDouglas, S.T.
dc.date.accessioned2022-06-13T23:24:44Z
dc.date.available2022-06-13T23:24:44Z
dc.date.issued2022
dc.identifier.citationRichey-Yowell, T., Shkolnik, E. L., Loyd, R. O. P., Jackman, J. A. G., Schneider, A. C., Agüeros, M. A., Barman, T., Meadows, V. S., Gibson, R., & Douglas, S. T. (2022). HAZMAT. VIII. A Spectroscopic Analysis of the Ultraviolet Evolution of K Stars: Additional Evidence for K Dwarf Rotational Stalling in the First Gigayear. Astrophysical Journal, 929(2).
dc.identifier.issn0004-637X
dc.identifier.doi10.3847/1538-4357/ac5f48
dc.identifier.urihttp://hdl.handle.net/10150/665166
dc.description.abstractEfforts to discover and characterize habitable zone planets have primarily focused on Sun-like stars and M dwarfs. K stars, however, provide an appealing compromise between these two alternatives that has been relatively unexplored. Understanding the ultraviolet (UV) environment around such stars is critical to our understanding of their planets, as the UV can drastically alter the photochemistry of a planet's atmosphere. Here we present near-UV and far-UV Hubble Space Telescope's Cosmic Origins Spectrograph observations of 39 K stars at three distinct ages: 40 Myr, 650 Myr, and ≈5 Gyr. We find that the K star (0.6-0.8 M ⊙) UV flux remains constant beyond 650 Myr before falling off by an order of magnitude by field age. This is distinct from early M stars (0.3-0.6 M ⊙), which begin to decline after only a few hundred megayears. However, the rotation-UV activity relation for K stars is nearly identical to that of early M stars. These results may be a consequence of the spin-down stalling effect recently reported for K dwarfs, in which the spin-down of K stars halts for over a gigayear when their rotation periods reach ≈10 days, rather than the continuous spin-down that G stars experience. These results imply that exoplanets orbiting K dwarfs may experience a stronger UV environment than thought, weakening the case for K stars as hosts of potential "super-habitable"planets. © 2022. The Author(s). Published by the American Astronomical Society.
dc.language.isoen
dc.publisherInstitute of Physics
dc.rightsCopyright © 2022. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence.
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.titleHAZMAT. VIII. A Spectroscopic Analysis of the Ultraviolet Evolution of K Stars: Additional Evidence for K Dwarf Rotational Stalling in the First Gigayear
dc.typeArticle
dc.typetext
dc.contributor.departmentLunar and Planetary Laboratory, University of Arizona
dc.identifier.journalAstrophysical Journal
dc.description.noteOpen access journal
dc.description.collectioninformationThis item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
dc.eprint.versionFinal published version
dc.source.journaltitleAstrophysical Journal
refterms.dateFOA2022-06-13T23:24:44Z


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Copyright © 2022. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence.
Except where otherwise noted, this item's license is described as Copyright © 2022. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence.