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  3. Refined parameters of the HD 22946 planetary system and the true orbital period of planet d

Refined parameters of the HD 22946 planetary system and the true orbital period of planet d

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DOI
10.48350/195581
Publisher DOI
10.1051/0004-6361/202345943
Abstract
Context. Multi-planet systems are important sources of information regarding the evolution of planets. However, the long-period planets in these systems often escape detection. These objects in particular may retain more of their primordial characteristics compared to close-in counterparts because of their increased distance from the host star. HD 22946 is a bright (G = 8.13 mag) late F-type star around which three transiting planets were identified via Transiting Exoplanet Survey Satellite (TESS) photometry, but the true orbital period of the outermost planet d was unknown until now.

Aims. We aim to use the Characterising Exoplanet Satellite (CHEOPS) space telescope to uncover the true orbital period of HD 22946d and to refine the orbital and planetary properties of the system, especially the radii of the planets.

Methods. We used the available TESS photometry of HD 22946 and observed several transits of the planets b, c, and d using CHEOPS. We identified two transits of planet d in the TESS photometry, calculated the most probable period aliases based on these data, and then scheduled CHEOPS observations. The photometric data were supplemented with ESPRESSO (Echelle SPectrograph for Rocky Exoplanets and Stable Spectroscopic Observations) radial velocity data. Finally, a combined model was fitted to the entire dataset in order to obtain final planetary and system parameters.

Results. Based on the combined TESS and CHEOPS observations, we successfully determined the true orbital period of the planet d to be 47.42489 ± 0.00011 days, and derived precise radii of the planets in the system, namely 1.362 ± 0.040 R⊕, 2.328 ± 0.039 R⊕, and 2.607 ± 0.060 R⊕ for planets b, c, and d, respectively. Due to the low number of radial velocities, we were only able to determine 3σ upper limits for these respective planet masses, which are 13.71 M⊕, 9.72 M⊕, and 26.57 M⊕. We estimated that another 48 ESPRESSO radial velocities are needed to measure the predicted masses of all planets in HD 22946. We also derived stellar parameters for the host star.

Conclusions. Planet c around HD 22946 appears to be a promising target for future atmospheric characterisation via transmission spectroscopy. We can also conclude that planet d, as a warm sub-Neptune, is very interesting because there are only a few similar confirmed exoplanets to date. Such objects are worth investigating in the near future, for example in terms of their composition and internal structure.
Date Issued
2023-06
Publication Type
Article
Subject(s)
500 Science > 520 Astronomy
600 Technology > 620 Engineering
500 Science > 530 Physics
500 Science
Language(s)
en
Author(s)
Garai, Z.
Osborn, Hugh Patrick  orcid-logo
NCCR PlanetS Universität Bern  
NCCR PlanetS - CHEOPS  
Gandolfi, D.
Brandeker, A.
Sousa, S. G.
Lendl, M.
Bekkelien, A.
Broeg, Christopher  orcid-logo
Center for Space and Habitability (CSH) - CHEOPS  
Center for Space and Habitability (CSH)  
Cameron, A. Collier
Egger, Jo Ann  orcid-logo
NCCR PlanetS - CHEOPS  
Hooton, Matthew John  
Physikalisches Institut - Space Research and Planetology Physics  
Alibert, Yann Daniel Pierre  orcid-logo
Physikalisches Institut - Space Research and Planetology Physics  
Space Research and Planetology Physics - Planetary Formation  
Delrez, L.
Fossati, L.
Salmon, S.
Wilson, T. G.
Bonfanti, A.
Tuson, A.
Ulmer-Moll, Solène Chloé  
Space Research and Planetology Physics - Planetary Evolution  
NCCR PlanetS Universität Bern  
Physikalisches Institut - Space Research and Planetology Physics  
Serrano, L. M.
Borsato, L.
Alonso, R.
Anglada, G.
Asquier, J.
Barrado y Navascues, D.
Barros, S. C. C.
Bárczy, T.
Baumjohann, W.
Beck, M.
Beck, Thomas  
Space Research and Planetology Physics - Remote Sensing  
Physikalisches Institut der Universität Bern  
Physikalisches Institut - Space Research and Planetology Physics  
Benz, Willy  
Center for Space and Habitability (CSH) - CHEOPS  
Physikalisches Institut - Space Research and Planetology Physics  
Center for Space and Habitability (CSH)  
Billot, N.
Biondi, F.
Bonfils, X.
Buder, M.
Cabrera, J.
Cessa, Virginie  
Space Research and Planetology Physics - Construction  
Charnoz, S.
Csizmadia, Sz.
Cubillos, P. E.
Davies, M. B.
Deleuil, M.
Demangeon, O. D. S.
Demory, Brice-Olivier  orcid-logo
Space Research and Planetology Physics - Planetary Evolution  
Center for Space and Habitability (CSH)  
Physikalisches Institut der Universität Bern  
Ehrenreich, D.
Erikson, A.
Van Eylen, V.
Fortier, Andrea  orcid-logo
Center for Space and Habitability (CSH)  
Center for Space and Habitability (CSH) - CHEOPS  
Fridlund, M.
Gillon, M.
Van Grootel, V.
Güdel, M.
Günther, M. N.
Hoyer, S.
Isaak, K. G.
Kiss, L. L.
Kristiansen, M. H.
Laskar, J.
des Etangs, A. Lecavelier
Lovis, C.
Luntzer, A.
Magrin, D.
Maxted, P. F. L.
Mordasini, Christoph  orcid-logo
Physikalisches Institut - Space Research and Planetology Physics  
Space Research and Planetology Physics - Planetary Evolution  
Nascimbeni, V.
Olofsson, G.
Ottensamer, R.
Pagano, I.
Pallé, E.
Peter, G.
Piotto, G.
Pollacco, D.
Queloz, D.
Ragazzoni, R.
Rando, N.
Rauer, H.
Ribas, I.
Santos, N. C.
Scandariato, G.
Ségransan, D.
Simon, Attila  orcid-logo
Center for Space and Habitability (CSH)  
Center for Space and Habitability (CSH) - CHEOPS  
Smith, A. M. S.
Steller, M.
Szabó, Gy. M.
Thomas, Nicolas  
Physikalisches Institut - Space Research and Planetology Physics  
Space Research and Planetology Physics - Remote Sensing  
Udry, S.
Venturini Corbellini, Julia Elisa  
International Space Science Institute  
Physikalisches Institut - Space Research and Planetology Physics  
Walton, N.
Additional Credits
NCCR PlanetS Universität Bern  
Physikalisches Institut der Universität Bern  
Center for Space and Habitability (CSH)  
Space Research and Planetology Physics - Construction  
Physikalisches Institut - Space Research and Planetology Physics  
Center for Space and Habitability (CSH) - CHEOPS  
Space Research and Planetology Physics - Planetary Formation  
Space Research and Planetology Physics - Planetary Evolution  
NCCR PlanetS - CHEOPS  
Space Research and Planetology Physics - Remote Sensing  
International Space Science Institute  
Journal
Astronomy and astrophysics
Publisher
EDP Sciences
ISSN
0004-6361
Access(Rights)
open.access
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