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首页> 外文期刊>The astronomical journal >Triton's Evolution with a Primordial Neptunian Satellite System
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Triton's Evolution with a Primordial Neptunian Satellite System

机译:海卫一的原始海王星卫星系统的演化

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The Neptunian satellite system is unusual. The major satellites of Jupiter, Saturn, and Uranus are all in prograde, low-inclination orbits. Neptune on the other hand, has the fewest satellites, and most of the system's mass is within one irregular satellite, Triton. Triton was most likely captured by Neptune and destroyed the primordial regular satellite system. We investigate the interactions between a newly captured Triton and a prior Neptunian satellite system. We find that a prior satellite system with a mass ratio similar to the Uranian system or smaller has a substantial likelihood of reproducing the current Neptunian system, while a more massive system has a low probability of leading to the current configuration. Moreover, Triton's interaction with a prior satellite system may offer a mechanism to decrease its high initial semimajor axis fast enough to preserve small irregular satellites (Nereid-like) that might otherwise be lost during a prolonged Triton circularization via tides alone.
机译:海王星卫星系统很不寻常。木星,土星和天王星的主要卫星都在前进,低倾角的轨道上。另一方面,海王星拥有的卫星最少,而且该系统的大部分质量都位于一颗不规则的卫星Triton之内。特里顿极有可能被海王星捕获并摧毁了原始的常规卫星系统。我们调查了新捕获的海卫一和先前的海王星卫星系统之间的相互作用。我们发现,质量比与乌拉尼系统或更近的现有卫星系统有很大的可能性重现当前的海王星系统,而更大的系统产生当前配置的可能性很小。此外,特里顿与先前的卫星系统的相互作用可能提供一种机制,以使其速度足够快地减小其较高的初始半长轴,以保留小的不规则卫星(类Nereid卫星),否则在长时间的Triton环化中仅靠潮汐可能会丢失这些卫星。

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