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A Sub-Neptune and a Non-Transiting Neptune-Mass Companion Unveiled by ESPRESSO Around the Bright Late-F Dwarf HD 5278 (TOI-130)

Authors :
A Sozzetti
M Damasso
A. S. Bonomo
Y. Alibert
S G Sousa
V. Adibekyan
M R Zapatero Osorio
J. I. González Hernández
S. C. C. Barros
J Lillo-Box
K. G. Stassun9
J. Winn
S. Cristiani
F. Pepe
R. Rebolo
N. C. Santos
R Allart
T S Barclay
F. Bouchy
A. Cabral
D. Ciardi
P. Di Marcantonio
V. D’Odorico
D. Ehrenreich
M. Fasnaugh
P. Figueira
J Haldemann
J. M. Jenkins
D W. Latham
B. Lavie
G. Lo Curto
C. Lovis
J C P Martinez
D. Mégevand
A Mehner
G Micela
P Molaro
N. J. Nunes
M Oshagh
J. Otegi
E Pallé
E Poretti
G R Ricker
D. Rodriguez
S. Seager
A. Suárez Mascareño
J D Twicken
S Udry
Source :
Astronomy & Astrophysics. 648(A75)
Publication Year :
2021
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2021.

Abstract

Context. Transiting sub-Neptune-type planets, with radii approximately between 2 and 4R⊕, are of particular interest as their study allows us to gain insight into the formation and evolution of a class of planets that are not found in our Solar System. Aims. We exploit the extreme radial velocity (RV) precision of the ultra-stable echelle spectrograph ESPRESSO on the VLT to unveil the physical properties of the transiting sub-Neptune TOI-130 b, uncovered by the TESS mission orbiting the nearby, bright, late F-typestar HD 5278 (TOI-130) with a period of Pb=14.3 days. Methods. We used 43 ESPRESSO high-resolution spectra and broad-band photometry information to derive accurate stellar atmospheric and physical parameters of HD 5278. We exploited the TESS light curve and spectroscopic diagnostics to gauge the impact of stellar activity on the ESPRESSO RVs. We performed separate as well as joint analyses of the TESS photometry and the ESPRESSORVs using fully Bayesian frameworks to determine the system parameters. Results. Based on the ESPRESSO spectra, the updated stellar parameters of HD 5278 are Teff=6203±64K, logg=4.50±0.11dex, [Fe/H] =−0.12±0.04dex,M?=1.126+0.036−0.035M, and R?=1.194+0.017−0.016R. We determine HD 5278 b’s mass and radius to be Mb=7.8+1.5−1.4M⊕ and Rb=2.45±0.05R⊕. The derived mean density, %b=2.9+0.6−0.5g cm−3, is consistent with the bulk composition of a sub-Neptune with a substantial (∼30%) water mass fraction and with a gas envelope comprising ∼17% of the measured radius. Given the host brightness and irradiation levels, HD 5278 b is one of the best targets orbiting G-F primaries for follow-up atmospheric characterization measurements with HST and JWST. We discover a second, non-transiting companion in the system, with a period of Pc=40.87+0.18−0.17days and a minimum mass of Mcsinic=18.4+1.8−1.9M⊕. We study emerging trends in parameters space (e.g., mass, radius, stellar insolation, and mean density) of the growing population of transiting sub-Neptunes, and provide statistical evidence for a low occurrence of close-in,10−15M⊕companions around G-F primaries withTeff&5500K.

Subjects

Subjects :
Astronomy

Details

Language :
English
ISSN :
14320746 and 00046361
Volume :
648
Issue :
A75
Database :
NASA Technical Reports
Journal :
Astronomy & Astrophysics
Notes :
907524, , 80GSFC21M0002, , 80MSFC20F0204, , NNG14FC03C, , 80NSSC21M0079, , ASI-INAF 2018-16-HH.0, , FP7-SPACE ETAEARTH GA 313014
Publication Type :
Report
Accession number :
edsnas.20210026359
Document Type :
Report
Full Text :
https://doi.org/10.1051/0004-6361/202040034