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March 16, 2026Monthly Notices of the Royal Astronomical Society0 citationsOpen Access

Detection of 27 Candidate Circumbinary Planets Through Apsidal Precession of Eclipsing Binaries Observed by TESS

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MTMargo ThorntonBMBenjamin T MontetRWRiley White

Key Points

  • This research aims to detect circumbinary planets through apsidal precession in eclipsing binary systems.
  • Analyzed TESS photometry of 1,590 eclipsing binaries from the Gaia DR3 Catalogue
  • Identified systems with measurable apsidal precession
  • Examined excess precession signals to infer potential additional companions
  • Identified 27 candidate circumbinary planets through precession-based methods
  • Found 6 candidate companions with higher minimum masses
  • Characterized properties of these candidates with existing uncertainty due to mass and orbital separation degeneracy

Abstract

Abstract Most circumbinary planets have been discovered by their transits, limiting our understanding of such systems to those with mutually coplanar architectures. This bias makes it difficult to infer the true circumbinary planet population, highlighting the need for alternative detection methods that do not rely on transits. In this work, we explore one such approach by leveraging apsidal precession as a dynamical signature of planetary companions. We analyse TESS photometry of a sample of 1,590 eclipsing binaries from the Gaia DR3 Catalogue of Eclipsing Binary Candidates to identify systems exhibiting measurable apsidal precession that cannot be explained by general relativistic, tidal, or rotational effects alone. These excess precession signals point to the presence of additional gravitational perturbers and allow constraints to be placed on the masses and orbital separations of potential companions. We present a new set of 27 candidate circumbinary planets identified through this precession-based method, as well as 6 candidate companions with a higher minimum mass. Their inferred properties remain degenerate, as the same dynamical signatures can arise from lower-mass planets at less than 1 AU or from more massive companions on wider, few-AU orbits, reflecting the current uncertainty in characterising these systems. Radial velocities can help break this degeneracy and provide direct confirmation.

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Cite This Study

Thornton et al. (2026) studied this question.

synapsesocial.com/papers/69b79e538166e15b153ab82chttps://doi.org/10.1093/mnras/stag515
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Eclipse Timing Variations of Circumbinary Substellar Objects in TESS Data2025
  2. 2Dynamical Detection of Singly-Transiting Circumbinary Planets2019
  3. 3Finding Circumbinary Planets: A Semi-Automated Transit Search of <i>TESS</i> Eclipsing Binaries2026
  4. 4The Way To Circumbinary Planets2024
  5. 5BEBOP VII. SOPHIE discovery of BEBOP-3b, a circumbinary giant planet on an eccentric orbit2025 · 8 citations