Worlds Next Door: A Candidate Giant Planet Imaged in the Habitable Zone of Cen A. I. Observations, Orbital and Physical Properties, and Exozodi Upper Limits
arXiv:2508.03814 · doi:10.3847/2041-8213/adf53f
Abstract
We report on coronagraphic observations of the nearest solar-type star, Cen A, using the MIRI instrument on the James Webb Space Telescope. With three epochs of observation (August 2024, February 2025, and April 2025), we achieve a sensitivity sufficient to detect 225-250 K (1-1.2 ) planets between 1"-2" and exozodiacal dust emission at the level of 5-8 the brightness of our own zodiacal cloud. The lack of exozodiacal dust emission sets an unprecedented limit of a few times the brightness of our own zodiacal clouda factor of 10 more sensitive than measured toward any other stellar system to date. In August 2024, we detected a F(15.5 m) = 3.5 mJy point source, called , at a separation of 1.5" from Cen A. Because the August 2024 epoch had only one successful observation at a single roll angle, it is not possible to unambiguously confirm as a bona fide planet. Our analysis confirms that is neither a background nor a foreground object. is not recovered in the February and April 2025 epochs. However, if is the counterpart of the object, , seen by the VLT/NEAR program in 2019, we find that there is a 52% chance that the candidate was missed in both follow-up JWST/MIRI observations due to orbital motion. Incorporating constraints from the non-detections, we obtain families of dynamically stable orbits for with periods between 2-3 years. These suggest that the planet candidate is on an eccentric () orbit significantly inclined with respect to Cen AB orbital plane (, or ). Based on the photometry and orbital properties, the planet candidate could have a temperature of 225 K, a radius of 1-1.1 and a mass between 90-150 , consistent with RV limits.
Accepted to ApJL. 34 pages, 22 figures, 10 tables