Origins of Super Jupiters TOI-2145b has a Moderately Eccentric and Nearly Aligned Orbit

Open Access
Authors
  • Songhu Wang
  • Chelsea X. Huang
  • Arvind F. Gupta
  • Samuel Halverson
  • Shubham Kanodia
  • Jacob K. Luhn
  • Suvrath Mahadevan
  • Andrew Monson
  • Jaime A. Alvarado-Montes
  • Joe P. Ninan
  • Paul Robertson
  • Arpita Roy
  • Christian Schwab
  • Jason T. Wright
Publication date 01-2025
Journal Astronomical Journal
Article number 4
Volume | Issue number 169 | 1
Number of pages 10
Organisations
  • Faculty of Science (FNWI) - Anton Pannekoek Institute for Astronomy (API)
Abstract
Super Jupiters are giant planets with several Jupiter masses. It remains an open question whether these planets originate with such high masses or grow through collisions. Previous work demonstrates that warm super Jupiters tend to have more eccentric orbits compared to regular-mass warm Jupiters. This correlation between mass and eccentricity may indicate that planet–planet interactions significantly influence the warm giant planet demographics. Here, we conducted a detailed characterization of a warm super Jupiter, TOI-2145b. This analysis utilized previous observations from Transiting Exoplanet Survey Satellite and Keck/High Resolution Echelle Spectrometer, enhanced by new Rossiter–McLaughlin effect data from the NEID spectrometer on the 3.5 m WIYN Telescope. TOI-2145b is a 5.68+0.37-0.34 MJup planet on a moderate eccentricity (e = 0.214+0.014-0.014), 10.26 day orbit, orbiting an evolved A-star. We constrain the projected stellar obliquity to be λ = 6.8+2.9-3.8° from two NEID observations. Our N-body simulations suggest that the formation of super Jupiter TOI-2145b could involve either of two scenarios: a high initial mass or growth via collisions. On a population level, however, the collision scenario can better describe the mass–eccentricity distribution of observed warm Jupiters.
Document type Article
Language English
Published at https://doi.org/10.3847/1538-3881/ad8ec1
Other links https://www.scopus.com/pages/publications/85217549647
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Origins of Super Jupiters (Final published version)
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