The TASSIE Program. II: Three Close-In Companions Orbiting Sun-Like Stars
T. Plunkett, E. Thygesen, A. A. Cole, J. Schulte, J. E. Rodriguez, B. Emptage, J. P. Beaulieu, G. Bakos, J. Hartman, C. Ziegler, K. A. Collins, Z. Csubry, K. Penev, A. Jordán, R. Brahm, L. Mancini, T. Henning, D. J. Radford, P. Evans
astro-ph.EP
Submitted: 2026-08-06
Comments: Accepted for publication in PASA. 25 pages (14 page main text + 11 page appendix/references), 18 figures, 9 tables
Code: https://github.com/stevepur/transit-diff
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present three southern transiting giant planet candidates alerted by the Transiting Exoplanet Survey Satellite (TESS) mission and investigated at the University of Tasmania Greenhill Observatory
Terminology
Abstract
We present three southern transiting giant planet candidates alerted by the Transiting Exoplanet Survey Satellite (TESS) mission and investigated at the University of Tasmania Greenhill Observatory (UTGO). The candidate planets are orbiting thin disk G-dwarf main-sequence stars with roughly solar metallicity, possessing orbital periods between 2.9 - 3.3 days and radii of 1.1 - 1.3 R J. We performed ground-based follow-up photometry primarily with the UTGO Harlingten 50 cm, then gathered reconnaissance spectra, high angular resolution imaging and high-precision radial velocities to rule out false positive scenarios. We confirmed that two of these systems host true exoplanets and constrained their masses. TOI-3053b is a typical hot Jupiter, with M 3053b = 0.85 plus or minus 0.12 M J and a bulk density of rho 3053b = 0.64 plus or minus 0.10 g cm-3. TOI-3278b / HATS-78b is a hot Saturn-mass planet (M 3278b = 0.30 plus or minus 0.07 M J) with a highly inflated atmosphere and a low density of rho 3278b = 0.21 plus or minus 0.05 g cm-3. The other candidate (TOI-3272.01) remains unconfirmed, but appears consistent with being a hot Jupiter. TOI-3272.01 is notable as a candidate planet orbiting a potentially young to intermediate age star, with a rotational analysis indicating an age estimate of T 3272 = 1.1 plus or minus 0.2 Gyr. These systems add to a growing sample of hot giant planets from TESS that may provide constraints on the migration pathways and radius inflation of the broader close-in exoplanet population.
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