Did Saturn's rings form during the Late Heavy Bombardment?

IF 3 2区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Icarus Pub Date : 2009-02-01 DOI:10.1016/j.icarus.2008.10.019
Sébastien Charnoz , Alessandro Morbidelli , Luke Dones , Julien Salmon
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引用次数: 90

Abstract

The origin of Saturn's massive ring system is still unknown. Two popular scenarios—the tidal splitting of passing comets and the collisional destruction of a satellite—rely on a high cometary flux in the past. In the present paper we attempt to quantify the cometary flux during the Late Heavy Bombardment (LHB) to assess the likelihood of both scenarios. Our analysis relies on the so-called “Nice model” of the origin of the LHB [Tsiganis, K., Gomes, R., Morbidelli, A., Levison, H.F., 2005. Nature 435, 459–461; Morbidelli, A., Levison, H.H., Tsiganis, K., Gomes, R., 2005. Nature 435, 462–465; Gomes, R., Levison, H.F., Tsiganis, K., Morbidelli, A., 2005. Nature 435, 466–469] and on the size distribution of the primordial trans-neptunian planetesimals constrained in [Charnoz, S., Morbidelli, A., 2007. Icarus 188, 468–480]. We find that the cometary flux on Saturn during the LHB was so high that both scenarios for the formation of Saturn rings are viable in principle. However, a more detailed study shows that the comet tidal disruption scenario implies that all four giant planets should have comparable ring systems whereas the destroyed satellite scenario would work only for Saturn, and perhaps Jupiter. This is because in Saturn's system, the synchronous orbit is interior to the Roche Limit, which is a necessary condition for maintaining a satellite in the Roche Zone up to the time of the LHB. We also discuss the apparent elimination of silicates from the ring parent body implied by the purity of the ice in Saturn's rings. The LHB has also strong implications for the survival of the saturnian satellites: all satellites smaller than Mimas would have been destroyed during the LHB, whereas Enceladus would have had from 40% to 70% chance of survival depending on the disruption model. In conclusion, these results suggest that the LHB is the “sweet moment” for the formation of a massive ring system around Saturn.

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土星环是在大轰炸后期形成的吗?
土星巨大的光环系统的起源仍然是未知的。在过去,有两种流行的设想——经过彗星的潮汐分裂和卫星的碰撞破坏——都依赖于高通量的彗星。在本文中,我们试图量化彗星在后期重轰炸(LHB)期间的通量,以评估这两种情况的可能性。我们的分析依赖于LHB起源的所谓“尼斯模型”[Tsiganis, K., Gomes, R., Morbidelli, A., Levison, h.f., 2005]。Nature 435, 459-461;Morbidelli, A., Levison, h.h., Tsiganis, K., Gomes, R., 2005。Nature 435, 462-465;Gomes, R., Levison, h.f., Tsiganis, K., Morbidelli, A., 2005。《自然》第35期,第466-469页[j] .地球科学进展,2007。伊卡洛斯[188,468 - 480]。我们发现,在大碰撞期间,土星上的彗星通量是如此之高,以至于土星环形成的两种情况原则上都是可行的。然而,一项更详细的研究表明,彗星潮汐破坏的情况意味着所有四颗巨行星都应该有类似的环系统,而卫星破坏的情况只适用于土星,也许还有木星。这是因为在土星的系统中,同步轨道在罗氏极限的内部,这是维持卫星在罗氏带的必要条件,直到LHB的时间。我们还讨论了土星环中冰的纯度所暗示的环母体中硅酸盐的明显消除。大碰撞对土星卫星的生存也有很大的影响:所有比土卫一小的卫星都会在大碰撞中被摧毁,而土卫二则有40%到70%的机会存活,这取决于破坏模型。总之,这些结果表明,LHB是土星周围形成一个巨大环系统的“甜蜜时刻”。
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来源期刊
Icarus
Icarus 地学天文-天文与天体物理
CiteScore
6.30
自引率
18.80%
发文量
356
审稿时长
2-4 weeks
期刊介绍: Icarus is devoted to the publication of original contributions in the field of Solar System studies. Manuscripts reporting the results of new research - observational, experimental, or theoretical - concerning the astronomy, geology, meteorology, physics, chemistry, biology, and other scientific aspects of our Solar System or extrasolar systems are welcome. The journal generally does not publish papers devoted exclusively to the Sun, the Earth, celestial mechanics, meteoritics, or astrophysics. Icarus does not publish papers that provide "improved" versions of Bode''s law, or other numerical relations, without a sound physical basis. Icarus does not publish meeting announcements or general notices. Reviews, historical papers, and manuscripts describing spacecraft instrumentation may be considered, but only with prior approval of the editor. An entire issue of the journal is occasionally devoted to a single subject, usually arising from a conference on the same topic. The language of publication is English. American or British usage is accepted, but not a mixture of these.
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