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行星系统中缺少“木星”的可能后果。

Possible consequences of absence of "Jupiters" in planetary systems.

作者信息

Wetherill G W

机构信息

Dept. of Terrestrial Magnetism, Carnegie Institution of Washington, Washington, DC, USA.

出版信息

Astrophys Space Sci. 1994;212:23-32. doi: 10.1007/BF00984505.

Abstract

The formation of the gas giant planets Jupiter and Saturn probably required the growth of massive approximately 15 Earth-mass cores on a time scale shorter than the approximately 10(7) time scale for removal of nebular gas. Relatively minor variations in nebular parameters could preclude the growth of full-size gas giants even in systems in which the terrestrial planet region is similar to our own. Systems containing "failed Jupiters," resembling Uranus and Neptune in their failure to capture much nebular gas, would be expected to contain more densely populated cometary source regions. They will also eject a smaller number of comets into interstellar space. If systems of this kind were the norm, observation of hyperbolic comets would be unexpected. Monte Carlo calculations of the orbital evolution of region of such systems (the Kuiper belt) indicate that throughout Earth history the cometary impact flux in their terrestrial planet regions would be approximately 1000 times greater than in our Solar System. It may be speculated that this could frustrate the evolution of organisms that observe and seek to understand their planetary system. For this reason our observation of these planets in our Solar System may tell us nothing about the probability of similar gas giants occurring in other planetary systems. This situation can be corrected by observation of an unbiased sample of planetary systems.

摘要

气态巨行星木星和土星的形成可能需要在短于约10^7年的时间尺度上,形成质量约为15个地球质量的巨大核心,这个时间尺度是星云气体消散所需的时间。即使在类地行星区域与我们太阳系相似的系统中,星云参数相对较小的变化也可能阻碍全尺寸气态巨行星的形成。包含“失败的木星”的系统,类似于天王星和海王星,未能捕获大量星云气体,预计会包含人口更密集的彗星源区。它们向星际空间喷射的彗星数量也会更少。如果这类系统是常态,那么观测到双曲线彗星将是出乎意料的。对这类系统区域(柯伊伯带)轨道演化的蒙特卡罗计算表明,在地球历史上,其类地行星区域的彗星撞击通量将比我们太阳系大约1000倍。可以推测,这可能会阻碍观测和试图理解其行星系统的生物的进化。因此,我们对太阳系中这些行星的观测可能无法告诉我们其他行星系统中出现类似气态巨行星的概率。通过观测无偏差的行星系统样本可以纠正这种情况。

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