Repository logo
  • English
  • العربية
  • বাংলা
  • Català
  • Čeština
  • Deutsch
  • Ελληνικά
  • Español
  • Suomi
  • Français
  • Gàidhlig
  • हिंदी
  • Magyar
  • Italiano
  • Қазақ
  • Latviešu
  • Nederlands
  • Polski
  • Português
  • Português do Brasil
  • Srpski (lat)
  • Српски
  • Svenska
  • Türkçe
  • Yкраї́нська
  • Tiếng Việt
Log In
New user? Click here to register.Have you forgotten your password?
  1. Home
  2. Scholalry Output
  3. Publications
  4. Discovery of a massive giant planet with extreme density around the sub-giant star TOI-4603
 
  • Details

Discovery of a massive giant planet with extreme density around the sub-giant star TOI-4603

Source
Astronomy and Astrophysics
ISSN
00046361
Date Issued
2023-04-01
Author(s)
Khandelwal, Akanksha
Sharma, Rishikesh
Chakraborty, Abhijit
Chaturvedi, Priyanka
Ulmer-Moll, Solène
Ciardi, David R.
Boyle, Andrew W.
Baliwal, Sanjay
Bieryla, Allyson
Latham, David W.
Prasad, Neelam J.S.S.V.
Nayak, Ashirbad
Lendl, Monika
Mordasini, Christoph
DOI
10.1051/0004-6361/202245608
Volume
672
Abstract
We present the discovery of a transiting massive giant planet around TOI-4603, a sub-giant F-type star from NASA-s Transiting Exoplanet Survey Satellite (TESS). The newly discovered planet has a radius of 1.042-0.035+0.038-RJ and an orbital period of 7.24599-0.00021+0.00022 days. Using radial velocity measurements with the PARAS and TRES spectrographs, we determined the planet-s mass to be 12.89-0.57+0.58-MJ, resulting in a bulk density of 14.1-1.6+1.7 g cm-3. This makes it one of the few known massive giant planets with an extreme density. It lies in the transition mass region of massive giant planets and low-mass brown dwarfs, an important addition to the population of fewer than five known objects in this mass range. The eccentricity of 0.325-±-0.020 and an orbital separation of 0.0888-±-0.0010 AU from its host star suggest that the planet is likely undergoing high-eccentricity tidal migration. We find a fraction of heavy elements of 0.13-0.06+0.05 and metal enrichment of the planet (ZP/Zstar) of 4.2-2.0+1.6. Detection of such systems will enable us to gain valuable insights into the governing mechanisms of massive planets and improve our understanding of their dominant formation and migration mechanisms.
Publication link
https://www.aanda.org/articles/aa/pdf/2023/04/aa45608-22.pdf
URI
https://d8.irins.org/handle/IITG2025/26847
Subjects
Methods: observational | Techniques: photometric | Techniques: radial velocities
IITGN Knowledge Repository Developed and Managed by Library

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify