English

Evidence for Primordial Alignment: Insights from Stellar Obliquity Measurements for Compact Sub-Saturn Systems

Earth and Planetary Astrophysics 2024-08-20 v2 Solar and Stellar Astrophysics

Abstract

Despite decades of effort, the mechanisms by which the spin axis of a star and the orbital axes of its planets become misaligned remain elusive. Particularly, it is of great interest whether the large spin-orbit misalignments observed are driven primarily by high-eccentricity migration -- expected to have occurred for short-period, isolated planets -- or reflect a more universal process that operates across systems with a variety of present-day architectures. Compact multi-planet systems offer a unique opportunity to differentiate between these competing hypotheses, as their tightly-packed configurations preclude violent dynamical histories, including high-eccentricity migration, allowing them to trace the primordial disk plane. In this context, we report measurements of the sky-projected stellar obliquity (λ\lambda) via the Rossiter-McLaughlin effect for two sub-Saturns in multiple-transiting systems: TOI-5126 b (λ=1±48\lambda=1\pm 48 ^\circ) and TOI-5398 b (λ=8.16.3+5.3\lambda=-8.1^{+5.3 \circ}_{-6.3}). Both are spin-orbit aligned, joining a fast-growing group of just three other compact sub-Saturn systems, all of which exhibit spin-orbit alignment. In aggregate with archival data, our results strongly suggest that sub-Saturn systems are primordially aligned and become misaligned largely in the post-disk phase, as appears to be the case increasingly for other exoplanet populations.

Keywords

Cite

@article{arxiv.2404.06504,
  title  = {Evidence for Primordial Alignment: Insights from Stellar Obliquity Measurements for Compact Sub-Saturn Systems},
  author = {Brandon T. Radzom and Jiayin Dong and Malena Rice and Xian-Yu Wang and Samuel W. Yee and Tyler R. Fairnington and Cristobal Petrovich and Songhu Wang},
  journal= {arXiv preprint arXiv:2404.06504},
  year   = {2024}
}

Comments

Accepted to AJ, 13 pages, 2 figures, 2 tables