Blanc Michel, Crida Aurélien, Shibaike Yuhito, Charnoz Sebastien, El Moutamid Maryame, Estrada Paul, Mousis Olivier, Salmon Julien, Schneeberger Antoine, Vernazza Pierre
Research Institute in Astrophysics and Planetology, Toulouse, France.
Laboratoire d'Astrophysique de Marseille, Marseille, France.
Space Sci Rev. 2025;221(3):35. doi: 10.1007/s11214-025-01156-8. Epub 2025 Mar 20.
This article explores the different formation scenarios of the Kronian moons system in the context of a highly dissipative Saturn, with the objective of identifying the most likely of these scenarios. First, we review the diversity of objects - moons and rings - orbiting solar system giant planets, and the diversity of their architectures, which formation scenarios must reproduce. We then identify in this broader context the specific features of the Saturn system, such as the particularly large spectrum of its moon masses, the uniqueness of Titan and the presence of both dense and tenuous rings, before discussing the applicability of the different giant planet moon formation scenarios to the Saturn case. We discuss each of the most relevant scenarios and their respective merits. Finally, we tentatively propose a "favorite" scenario and we identify the key observations to be made by future space missions and/or Earth-based telescopic observations to validate this scenario or possibly alternative ones.
本文在土星具有高度耗散性的背景下,探讨了土卫系统的不同形成情景,目的是确定这些情景中最有可能的一种。首先,我们回顾了围绕太阳系巨行星运行的天体(卫星和环)的多样性,以及它们结构的多样性,形成情景必须重现这些多样性。然后,在这个更广泛的背景下,我们确定土星系统的具体特征,例如其卫星质量的特别大的范围、土卫六的独特性以及密集和稀薄环的存在,之后再讨论不同的巨行星卫星形成情景对土星情况的适用性。我们讨论了每个最相关的情景及其各自的优点。最后,我们初步提出一个“最受青睐”的情景,并确定未来太空任务和/或地面望远镜观测需要进行的关键观测,以验证这个情景或可能的其他情景。