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On the possibility of terrestrial planet formation in hot-Jupiter systems

机译:关于热木星系统中地球行星形成的可能性

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About a fifth of the exoplanetary systems that have been discovered contain a so-called hot-Jupiter – a giant planet orbiting within 0.1 AU of the central star. Since these stars are typically of the F/G spectral type, the orbits of any terrestrial planets in their habitable zones at ~1 AU should be dynamically stable. However, because hot-Jupiters are thought to have formed in the outer regions of a protoplanetary disc, and to have then migrated through the terrestrial planet zone to their final location, it is uncertain whether terrestrial planets can actually grow and be retained in these systems. In this paper we review attempts to answer this question. Initial speculations, based on the assumption that migrating giant planets will clear planet-forming material from their swept zone, all concluded that hot-Jupiter systems should lack terrestrial planets. We show that this assumption may be incorrect, for when terrestrial planet formation and giant planet migration are simulated simultaneously, abundant solid material is predicted to remain from which terrestrial planet growth can resume.
机译:已经发现的大约五分之一的系外行星系统包含一个所谓的热木星,这是一个在中心恒星0.1 AU之内运行的巨型行星。由于这些恒星通常属于F / G光谱类型,因此在〜1 AU的宜居区域中的任何地球行星的轨道都应动态稳定。但是,由于认为热木星是在原行星盘的外围形成的,然后又通过地行星区域迁移到其最终位置,因此不确定地行星是否能够真正生长并保留在这些系统中。在本文中,我们回顾了尝试回答这个问题的尝试。最初的推测是基于这样的假设,即正在迁移的巨型行星将清除其扫掠区形成的行星物质,所有这些结论都得出结论,即热木星系统应缺少地面行星。我们证明了这一假设可能是不正确的,因为当同时模拟地行星形成和巨型行星迁移时,预计将保留大量固体物质,从中可以恢复地行星生长。

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