Probabilistic Constraints on the Mass and Composition of Proxima b
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FInal Published Version
Affiliation
Univ Arizona, Dept Planetary Sci, Lunar & Planetary LabIssue Date
2017-02-21Keywords
planets and satellites: compositionplanets and satellites: individual ( Proxima Centauri b)
methods: numerical
methods: statistical
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IOP PUBLISHING LTDCitation
Probabilistic Constraints on the Mass and Composition of Proxima b 2017, 836 (2):L31 The Astrophysical Journal LettersRights
© 2017. The American Astronomical Society. All rights reserved.Collection Information
This 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.Abstract
Recent studies regarding the habitability, observability, and possible orbital evolution of the indirectly detected exoplanet Proxima b have mostly assumed a planet with M similar to 1.3 M-circle plus, a rocky composition, and an Earth-like atmosphere or none at all. In order to assess these assumptions, we use previous studies of the radii, masses, and compositions of super-Earth exoplanets to probabilistically constrain the mass and radius of Proxima. b, assuming an isotropic inclination probability distribution. We find it is similar to 90% likely that the planet's density is consistent with a rocky composition; conversely, it is at least 10% likely that the planet has a significant amount of ice or an H/He envelope. If the planet does have a rocky composition, then we find expectation values and 95% confidence intervals of < M >(rocky) = 1.63(-0.72)(+1.66) M-circle plus for its mass and < R >(rocky) = 1.07(-0.31)(+0.38) R-circle plus for its radius.ISSN
2041-8213Version
Final published versionSponsors
NASA's Science Mission DirectorateAdditional Links
http://stacks.iop.org/2041-8205/836/i=2/a=L31?key=crossref.2a2b7c74330550df6f94c8a5751a0e37ae974a485f413a2113503eed53cd6c53
10.3847/2041-8213/aa5f51