Can Moons Exist around the Habitable-zone Planet K2-18b?
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arXiv
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| Format: | Preprint |
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2025
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| _version_ | 1866915391741100032 |
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| author | Patel, Shaan D. Quarles, Billy Cuntz, Manfred Weinberg, Nevin N. |
| author_facet | Patel, Shaan D. Quarles, Billy Cuntz, Manfred Weinberg, Nevin N. |
| contents | K2-18b closely orbits a nearby M3 dwarf within its habitable zone, where this planet could be either a super-Earth or a mini-Neptune. Recent studies using transit spectroscopy suggest that it is Hycean in nature, but this classification is currently controversial. We use the N-body integrator rebound and its extension library reboundx to investigate the possibility of exomoons around K2-18b. Due to tidal interactions that induce outward migration, we find that any moons would be extremely unlikely. If formed, their lifetimes would be relatively short, not exceeding 10 Myr assuming Earth-like or Neptune-like tidal parameters for K2-18b. Recent studies estimate the stellar (and system) lifetime as 3 Gyr, which is significantly longer than the tidal migration timescale. We show that exomoons are unlikely to survive around K2-18b due to rapid tidal-driven migration, casting doubt on moon-based habitability scenarios for short-period M-dwarf planets in general. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2507_11594 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Can Moons Exist around the Habitable-zone Planet K2-18b? Patel, Shaan D. Quarles, Billy Cuntz, Manfred Weinberg, Nevin N. Earth and Planetary Astrophysics K2-18b closely orbits a nearby M3 dwarf within its habitable zone, where this planet could be either a super-Earth or a mini-Neptune. Recent studies using transit spectroscopy suggest that it is Hycean in nature, but this classification is currently controversial. We use the N-body integrator rebound and its extension library reboundx to investigate the possibility of exomoons around K2-18b. Due to tidal interactions that induce outward migration, we find that any moons would be extremely unlikely. If formed, their lifetimes would be relatively short, not exceeding 10 Myr assuming Earth-like or Neptune-like tidal parameters for K2-18b. Recent studies estimate the stellar (and system) lifetime as 3 Gyr, which is significantly longer than the tidal migration timescale. We show that exomoons are unlikely to survive around K2-18b due to rapid tidal-driven migration, casting doubt on moon-based habitability scenarios for short-period M-dwarf planets in general. |
| title | Can Moons Exist around the Habitable-zone Planet K2-18b? |
| topic | Earth and Planetary Astrophysics |
| url | https://arxiv.org/abs/2507.11594 |