一点点物理学就能说明这么多:地月系统起源的独特故事

F. Cadieu
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引用次数: 3

摘要

对地月系统起源的研究表明,这是一次异常剧烈的事件。结果之一是地球成为平均密度最高的类地行星。另一个结果是,地球获得了足够的质量和放射性元素,预计在地球的预期寿命内,它将保持一个熔融的地核区域和磁场。在类地行星中,只有地球能够发展板块构造,作为一种长期的能量释放机制。太阳的偶极磁场周期性地反转,目前大约每11年反转一次,所以金星的核心上有一个磁制动作用,这就是金星自转缓慢的原因。一个关键的结果是,造成地月系统的撞击事件导致了地球上的长期稳定,这使得地球上复杂生命形式的最终发展成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Just a Bit of Physics Can Tell So Much: A Unique Story of the Start of the Earth-Moon System
The start of the Earth-Moon system has been studied to show that this was an exceptionally violent event. One result was that Earth became the terrestrial planet with the highest average density. Another result was that Earth acquired enough mass and radioactive elements that it is expected to maintain a molten core region and magnetic field for the expected life of the Earth. Earth alone of the terrestrial planets was then able to develop plate tectonics as a long term energy release mechanism. The dipole magnetic field of the Sun reverses periodically, currently at the rate of about every 11 years, so that there was a magnetic braking action acting on the core of Venus that accounts for the slow rotation of that planet. A key result is that the impact event that resulted in the Earth-Moon system led to long term stability on Earth that allowed the eventual development of complex life forms on the Earth.
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