activity
20222024
most citedTOI-2525 b and c: A pair of massive warm giant planets with a strong transit timing variations revealed by TESS

33 citations · 115 across the 6 of their papers we have counts for

collaborators

6 papers

astro-ph.EP202414 cited

Three Warm Jupiters around Solar-analog stars detected with TESS

Jan Eberhardt, Melissa J. Hobson, Thomas Henning +32

We report the discovery and characterization of three giant exoplanets orbiting solar-analog stars, detected by the \tess space mission and confirmed through ground-based photometr…

astro-ph.EP2023

TOI-199 b: A well-characterized 100-day transiting warm giant planet with TTVs seen from Antarctica

Melissa J. Hobson, Trifon Trifonov, Thomas Henning +49

We present the spectroscopic confirmation and precise mass measurement of the warm giant planet TOI-199 b. This planet was first identified in TESS photometry and confirmed using g…

astro-ph.EP202324 cited

Three long period transiting giant planets from TESS

Rafael Brahm, Solène Ulmer-Moll, Melissa J. Hobson +52

We report the discovery and orbital characterization of three new transiting warm giant planets. These systems were initially identified as presenting single transit events in the…

astro-ph.EP202333 cited

TOI-2525 b and c: A pair of massive warm giant planets with a strong transit timing variations revealed by TESS

Trifon Trifonov, Rafael Brahm, Andres Jordan +44

TOI-2525 is a K-type star with an estimated mass of M = 0.849 M and radius of R = 0.785 R observed by the TESS mission in 22…

astro-ph.EP202315 cited

A 2:1 Mean-Motion Resonance Super-Jovian pair revealed by TESS, FEROS, and HARPS

Vladimir Bozhilov, Desislava Antonova, Melissa J. Hobson +24

We report the discovery of a super-Jovian 2:1 mean-motion resonance (MMR) pair around the G-type star TIC 279401253, whose dynamical architecture is a prospective benchmark for pla…

astro-ph.EP202229 cited

Two long-period transiting exoplanets on eccentric orbits: NGTS-20 b (TOI-5152 b) and TOI-5153 b

S. Ulmer-Moll, M. Lendl, S. Gill +50

Long-period transiting planets provide the opportunity to better understand the formation and evolution of planetary systems. Their atmospheric properties remain largely unaltered…