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Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
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Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
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Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328

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Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328
Paper

Three Warm Jupiters orbiting TOI-6628, TOI-3837, TOI-5027 and one sub-Saturn orbiting TOI-2328

2024
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Overview
We report the discovery and characterization of three new transiting giant planets orbiting TOI-6628, TOI-3837 and TOI-5027, and one new warm sub-Saturn orbiting TOI-2328, whose transits events were detected in the lightcurves of the Transiting Exoplanet Survey Satellite (TESS) space mission. By combining TESS lightcurves with ground-based photometric and spectroscopic follow-up observations we confirm the planetary nature of the observed transits and radial velocity variations. TOI-6628~\\(b\\) has a mass of 0.75\\(\\)0.06~\\(M_J\\), a radius of 0.98\\(\\)0.05~\\(R_J\\) and is orbiting a metal-rich star with a period of 18.18424\\(0.00001\\) days and an eccentricity of 0.667\\(0.016\\), making it one of the most eccentric orbits of all known warm giants. TOI-3837~\\(b\\) has a mass of 0.59\\(\\)0.06~\\(M_J\\), a radius of 0.96\\(\\)0.05~\\(R_J\\) and orbits its host star every 11.88865\\(\\)0.00003~days, with a moderate eccentricity of 0.198\\(^+0.046_-0.058\\). With a mass of 2.01\\(\\)0.13~\\(M_J\\) and a radius of 0.99\\(^+0.07_-0.12\\) \\(R_J\\), TOI-5027~\\(b\\) orbits its host star in an eccentric orbit with \\(e\\)~=~0.395\\(^+0.032_-0.029\\) every 10.24368\\(0.00001\\)~days. TOI-2328~\\(b\\) is a Saturn-like planet with a mass of 0.16\\(\\)0.02~\\(M_J\\) and a radius of 0.89\\(\\)0.04~\\(R_J\\), orbiting its host star in a nearly circular orbit with \\(e\\)~=~0.057\\(^+0.046_-0.029\\) at an orbital period of 17.10197\\(0.00001\\) days. All four planets have orbital periods above 10 days, and our planet interior structure models are consistsent a rocky-icy core with a H/He envelope, providing evidence supporting the core accretion model of planet formation for this kind of planets.