English

Direct Imaging Constraints on Binary Planets and Exomoons around Epsilon Indi A b

Earth and Planetary Astrophysics 2026-04-28 v1

Abstract

Epsilon Indi A b is a directly imaged 6MJup\sim6 M_{\rm Jup} exoplanet orbiting a nearby (3.6 pc) K-dwarf at 30\sim 30 AU. We analyze archival JWST/MIRI 15 μ\mum coronagraphic imaging of this planet to search for directly imaged satellites orbiting Eps Ind A b. Within the planet's Hill sphere (radius RH2.3R_H \approx 2.3 AU or 1.3λ/D1.3 \lambda/D), we compare single- and double-PSF models using Bayesian evidence. We find that a double-PSF (binary planet) fit is preferred. This apparent preference can most plausibly be explained by systematics, although follow-up observations would be required to fully rule out a binary planet interpretation. We construct a contrast curve of the exoplanet after removing this feature, demonstrating sensitivity to companions as faint as 0.03×0.03\times the F1550C flux of Eps Ind A b (equivalent to T=130T = 130 K, 1.3MJup1.3 M_{\rm Jup}) at large separations (>2 AU). We also demonstrate sensitivity to brighter companions 0.2×0.2\times the F1550C flux of Eps Ind A b (equivalent to T=180T = 180 K, 2.5MJup2.5 M_{\rm Jup}) down to separations of 0.52 AU (1.3 pixels; 0.29λ/D0.29 \lambda/D; 144 mas). This study demonstrates that JWST/MIRI can directly detect exomoons or binary planets inside the Hill sphere of directly imaged exoplanets orbiting neighboring stars.

Keywords

Cite

@article{arxiv.2604.23448,
  title  = {Direct Imaging Constraints on Binary Planets and Exomoons around Epsilon Indi A b},
  author = {Matson Garza and Mary Anne Limbach and Rachel Bowens-Rubin and Matthew De Furio and Elisabeth C. Matthews and Kyle Franson and Sarah C. Millholland and Logan A. Pearce and Andrew Vanderburg},
  journal= {arXiv preprint arXiv:2604.23448},
  year   = {2026}
}

Comments

Accepted to AJ, 14 pages with 5 figures

R2 v1 2026-07-01T12:35:22.136Z