论文标题

55 Cancri系统中彗星的理论研究

Theoretical Studies of Comets in the 55 Cancri System

论文作者

Dvorak, Rudolf, Loibnegger, Birgit, Cuntz, Manfred

论文摘要

我们介绍了55个CANCRI系统中各种木星家庭彗星(JFC)的轨道整合。众所周知,该恒星拥有(至少)五个行星,质量从超级地球到木星型。此外,根据观察性的约束,有一个没有行星在〜0.8 au和〜5.7 au之间的空间,提供了可居住的陆地行星的主要可能性,包括长期的轨道稳定性。因此,在55个CNC系统中研究彗星的动机很明显,指出彗星被认为是一种可行的候选机制,用于将水传递到位于恒星可居住区的地球式行星。但是,我们的研究表明,由于系统的行星结构在太阳系中存在很大差异,因此55 CNC系统中JFC类似物的稳定性比太阳系中的彗星要短得多。例如,在55 CNC-F和55〜CNC-D之间,由于55 CNC系统中的行星质量比太阳系中的行星质量大得多,因此彗星不会经历类似于地球和太阳系中的火星的近距离遇到的彗星,因此彗星的骨非常稳定。然而,我们预计在0.8 / 5.7 AU间隙中的彗星风格相遇和彗星碰撞数量增加。需要未来的观察和其他理论研究,以阐明55 CNC系统中可居住的陆地行星的可能性,包括外射组组在促进行星宜居性中的可能作用。

We present orbital integrations for various Jupiter family comets (JFCs) in the 55 Cancri system. This star is known to possess (at least) five planets with masses ranging from super-Earth to Jupiter-type. Furthermore, according to observational constraints, there is a space without planets between ~0.8 au and ~5.7 au, offering the principal possibility of habitable terrestrial planets, including long-term orbital stability. Hence, there is a stark motivation for the study of comets in the 55 Cnc system noting that comets are viewed a viable candidate mechanism for the delivery of water to Earth-type planets located in stellar habitable zones. However, our study shows that the duration of stability of JFC analogs in the 55 Cnc system is much shorter compared to comets in the Solar System owing to profound differences in the planetary structure of the systems. For example, between planet 55 Cnc-f and 55~Cnc-d, the comets do not undergo close cometary encounters akin to Earth and Mars in the Solar System as the planetary masses in the 55 Cnc system are much larger than in the Solar System and therefore the comets are much less orbitally stable. Nevertheless, we expect an increased number of comet-planet encounters as well as cometary collisions in the 0.8 / 5.7 au gap. Future observations and additional theoretical studies are required to shed light on the possibility of habitable terrestrial planets in the 55 Cnc system, including the possible role(s) of exocomets in the facilitation of planetary habitability.

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