4.6 Article

A detailed analysis of the Gl 486 planetary system

期刊

ASTRONOMY & ASTROPHYSICS
卷 665, 期 -, 页码 -

出版社

EDP SCIENCES S A
DOI: 10.1051/0004-6361/202243548

关键词

planetary systems; techniques; photometric; techniques; radial velocities; stars; individual; Gl 486; stars; late-type

资金

  1. David and Lucile Packard Foundation
  2. Heising-Simons Foundation
  3. Gemini Observatory
  4. University of Chicago
  5. Max-Planck-Gesellschaft (MPG)
  6. Consejo Superior de Investigaciones Cientificas (CSIC)
  7. Ministerio de Economia y Competitividad (MINECO)
  8. European Regional Development Fund (ERDF) [FICTS-2011-02, ICTS-2017-07-CAHA-4, CAHA16-CE-3978]
  9. Deutsche Forschungsgemeinschaft (DFG) [FOR2544]
  10. National Science Foundation [AST-1636624, AST-2034336, 2108465, DGE 1746045]
  11. European Research Council (ERC) under the European Union [639889]
  12. NASA [XRP NNX16AD43G]
  13. NSF [AST 1909165]
  14. Wise Observatory, Tel-Aviv University, Israel [TAU2021A-015]
  15. Agencia Estatal de Investigacion of the Ministerio de Ciencia, Innovacion y Universidades and the ERDF [PID2019-109522GB-C5[1:4], PID2019-107061GBC64, PID2019-110689RB-100, PGC2018-095317-B-C21, PGC2018-102108-BI00]
  16. Centre of Excellence Severo Ochoa [CEX2019-000920-S]
  17. Centre of Excellence Maria de Maeztu [CEX2019-000920-S]
  18. Instituto de Astrofisica de Andalucia [SEV-2017-0709]
  19. Centro de Astrobiologia [MDM2017-0737]
  20. DFG [FOR2544 (KU 3625/2-1)]
  21. Germany's Excellence Strategy to the Excellence Cluster ORIGINS [EXC-2094 -390783311]
  22. European Research Council [639889]
  23. Bulgarian National Science Fund through VIHREN-2021 [KP-06-DB/5]
  24. Schweizerischer Nationalfonds zur Forderung der wissenschaftlichen Forschung/Fonds national suisse de la recherche scientifique [PZ00P2_174028]
  25. United Kingdom Science Technology and Facilities Council [630008203]
  26. Princeton University through the Henry Norris Russell Fellowship
  27. Universidad La Laguna through the Margarita Salas Fellowship from the Spanish Ministerio de Universidades
  28. EU Next Generation funds [UNI/551/2021]
  29. Generalitat de Catalunya (CERCA programme)
  30. Division Of Astronomical Sciences
  31. Direct For Mathematical & Physical Scien [2108465] Funding Source: National Science Foundation

向作者/读者索取更多资源

This study thoroughly characterizes the Gl 486 planetary system using new and precise data collected from space and ground-based instruments. The results provide insights into the internal structure and composition of the planet, which can be further studied in atmospheric research.
Context. The Gl 486 system consists of a very nearby, relatively bright, weakly active M3.5 V star at just 8 pc with a warm transiting rocky planet of about 1.3 R-circle plus and 3.0 M-circle plus. It is ideal for both transmission and emission spectroscopy and for testing interior models of telluric planets. Aims. To prepare for future studies, we aim to thoroughly characterise the planetary system with new accurate and precise data collected with state-of-the-art photometers from space and spectrometers and interferometers from the ground. Methods. We collected light curves of seven new transits observed with the CHEOPS space mission and new radial velocities obtained with MAROON-X at the 8.1 m Gemini North telescope and CARMENES at the 3.5 m Calar Alto telescope, together with previously published spectroscopic and photometric data from the two spectrographs and TESS. We also performed near-infrared interferometric observations with the CHARA Array and new photometric monitoring with a suite of smaller telescopes (AstroLAB, LCOGT, OSN, TJO). This extraordinary and rich data set was the input for our comprehensive analysis. Results. From interferometry, we measure a limb-darkened disc angular size of the star Gl 486 at theta(LDD) = 0.390 +/- 0.018 mas. Together with a corrected Gaia EDR3 parallax, we obtain a stellar radius R-* = 0.339 +/- 0.015 R-circle plus. We also measure a stellar rotation period at P-rot = 49.9 +/- 5.5 days, an upper limit to its XUV (5-920 A) flux informed by new Hubble/STIS data, and, for the first time, a variety of element abundances (Fe, Mg, Si, V, Sr, Zr, Rb) and C/O ratio. Moreover, we imposed restrictive constraints on the presence of additional components, either stellar or sub-stellar, in the system. With the input stellar parameters and the radial-velocity and transit data, we determine the radius and mass of the planet Gl 486 b at R-p = 1.343(-0.062)(+0.063) R-circle plus and M-p = 3.00(-0.12)(+0.13) M-circle plus, with relative uncertainties of the planet radius and mass of 4.7% and 4.2%, respectively. From the planet parameters and the stellar element abundances, we infer the most probable models of planet internal structure and composition, which are consistent with a relatively small metallic core with respect to the Earth, a deep silicate mantle, and a thin volatile upper layer. With all these ingredients, we outline prospects for Gl 486 b atmospheric studies, especially with forthcoming James Webb Space Telescope (Webb) observations.

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