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The GAPS programme at TNG XYZ. A sub-Neptune suitable for atmospheric characterization in a multiplanet and mutually inclined system orbiting the bright K dwarf TOI-5789 (HIP 99452)

Published 13 Oct 2025 in astro-ph.EP and astro-ph.SR | (2510.11490v1)

Abstract: Sub-Neptunes with planetary radii of Rp24RR_{p} \simeq 2-4 R_{\oplus} are the most common planets around solar-type stars in short-period ($P&lt;100$ d) orbits. It is still unclear, however, what their most likely composition is, that is whether they are predominantly gas dwarfs or water worlds. The sub-Neptunes orbiting bright host stars are very valuable because they are suitable for atmospheric characterization, which can break the well-known degeneracy in planet composition from the planet bulk density, when combined with a precise and accurate mass measurement. Here we report on the characterization of the sub-Neptune TOI-5789 c, which transits in front of the bright (V=7.3V=7.3 mag and Ks=5.35K_{s}=5.35 mag) and magnetically inactive K1V dwarf HIP 99452 every 12.93 days, thanks to TESS photometry and 141 high-precision radial velocities obtained with the HARPS-N spectrograph. We find that its radius, mass, and bulk density are Rc=2.86<sup>+0.180.15</sup>RR_{c}=2.86<sup>{+0.18}_{-0.15}</sup> R_\oplus, Mc=5.00±0.50MM_{c}=5.00 \pm 0.50 M_\oplus, and ρc=1.16±0.23\rho_{c}=1.16 \pm 0.23 g cm<sup>3<sup>{-3}, and we show that TOI-5789 c is a promising target for atmospheric characterization with both JWST and, in the future, Ariel. By analyzing the HARPS-N radial velocities with different tools, we also detect three additional non-transiting planets, namely TOI-5789 b, d, and e, with orbital periods and minimum masses of Pb=2.76P_{b}=2.76 d, Mbsini=2.12±0.28MM_{b}\sin{i}=2.12 \pm 0.28 M_\oplus, Pd=29.6P_{d}=29.6 d, Mdsini=4.29±0.68MM_{d}\sin{i}=4.29 \pm 0.68 M_\oplus, and Pe=63.0P_{e}=63.0 d, Mesini=11.61±0.97MM_{e}\sin{i}=11.61 \pm 0.97 M_\oplus. The mutual orbital inclination between planets b and c must be higher than 4\sim4 deg, which points to a dynamically hot system. Nevertheless, from sensitivity studies based on both the HARPS-N and archival HIRES radial-velocity measurements, we can exclude that such high mutual inclinations are due to the perturbation by an outer gaseous giant planet.

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