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The mass of Kepler-93b and the composition of terrestrial planets

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Cameron_2015_TAJ_Kepler.pdf (493.7Kb)
Date
20/02/2015
Author
Dressing, Courtney D.
Charbonneau, David
Dumusque, Xavier
Gettel, Sara
Pepe, Francesco
Cameron, Andrew Collier
Latham, David W.
Molinari, Emilio
Udry, Stephane
Affer, Laura
Bonomo, Aldo S.
Buchhave, Lars A.
Cosentino, Rosario
Figueira, Pedro
Fiorenzano, Aldo F. M.
Harutyunyan, Avet
Haywood, Raphaelle D.
Johnson, John Asher
Lopez-Morales, Mercedes
Lovis, Christophe
Malavolta, Luca
Mayor, Michel
Micela, Giusi
Motalebi, Fatemeh
Nascimbeni, Valerio
Phillips, David F.
Piotto, Giampaolo
Pollacco, Don
Queloz, Didier
Rice, Ken
Sasselov, Dimitar
Segransan, Damien
Sozzetti, Alessandro
Szentgyorgyi, Andrew
Watson, Chris
Funder
European Commission
Science & Technology Facilities Council
Science & Technology Facilities Council
PPARC - Now STFC
Science & Technology Facilities Council
Science & Technology Facilities Council
Science & Technology Facilities Council
Grant ID
ST/M001296/1
ST/I000666/1
PP/D000890/1
ST/J001651/1
ST/G001006/1
PP/F000065/1
Keywords
Planetary systems
Planets and satellites: composition
Stars: individual (Kepler-93=KOI 69=KIC 3544595)
Techniques: radial velocities
100 Earth masses
Super-Earths
Radius relationships
Extrasolar planets
Solar-systems
Stars
Abundances
Transits
Catalog
Orbits
QB Astronomy
QC Physics
NDAS
BDC
R2C
~DC~
Metadata
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Abstract
Kepler-93b is a 1.478 ± 0.019 R ⊕ planet with a 4.7 day period around a bright (V = 10.2), astroseismically characterized host star with a mass of 0.911 ± 0.033 M ☉ and a radius of 0.919 ± 0.011 R ☉. Based on 86 radial velocity observations obtained with the HARPS-N  spectrograph on the Telescopio Nazionale Galileo and 32 archival Keck/HIRES observations, we present a precise mass estimate of 4.02 ± 0.68 M ⊕. The corresponding high density of 6.88 ± 1.18 g cm–3 is consistent with a rocky composition of primarily iron and magnesium silicate. We compare Kepler-93b to other dense planets with well-constrained parameters and find that between 1 and 6 M ⊕, all dense planets including the Earth and Venus are well-described by the same fixed ratio of iron to magnesium silicate. There are as of yet no examples of such planets with masses >6 M ⊕. All known planets in this mass regime have lower densities requiring significant fractions of volatiles or H/He gas. We also constrain the mass and period of the outer companion in the Kepler-93 system from the long-term radial velocity trend and archival adaptive optics images. As the sample of dense planets with well-constrained masses and radii continues to grow, we will be able to test whether the fixed compositional model found for the seven dense planets considered in this paper extends to the full population of 1-6 M ⊕ planets.
Citation
Dressing , C D , Charbonneau , D , Dumusque , X , Gettel , S , Pepe , F , Cameron , A C , Latham , D W , Molinari , E , Udry , S , Affer , L , Bonomo , A S , Buchhave , L A , Cosentino , R , Figueira , P , Fiorenzano , A F M , Harutyunyan , A , Haywood , R D , Johnson , J A , Lopez-Morales , M , Lovis , C , Malavolta , L , Mayor , M , Micela , G , Motalebi , F , Nascimbeni , V , Phillips , D F , Piotto , G , Pollacco , D , Queloz , D , Rice , K , Sasselov , D , Segransan , D , Sozzetti , A , Szentgyorgyi , A & Watson , C 2015 , ' The mass of Kepler-93b and the composition of terrestrial planets ' , Astrophysical Journal , vol. 800 , no. 2 , 135 . https://doi.org/10.1088/0004-637X/800/2/135
Publication
Astrophysical Journal
Status
Peer reviewed
DOI
https://doi.org/10.1088/0004-637X/800/2/135
ISSN
0004-637X
Type
Journal article
Rights
© 2015. The American Astronomical Society. All rights reserved. Reproduced in accordance with AAS copyright policy. The final published version can be found here: http://iopscience.iop.org/0004-637X/800/2/135/article
Collections
  • University of St Andrews Research
URI
http://hdl.handle.net/10023/6308

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