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首页> 外文期刊>Journal of geophysical research. Planets >The Origin of the MoonWithin a Terrestrial Synestia
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The Origin of the MoonWithin a Terrestrial Synestia

机译:月球生物句子的起源

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The giant impact hypothesis remains the leading theory for lunar origin. However, current models struggle to explain the Moon's composition and isotopic similarity with Earth. Here we present a new lunar origin model. High-energy, high-angular-momentum giant impacts can create a post-impact structure that exceeds the corotation limit, which defines the hottest thermal state and angular momentum possible for a corotating body. In a typical super-corotation-limit body, traditional definitions of mantle, atmosphere, and disk are not appropriate, and the body forms a new type of planetary structure,named a synestia. Using simulations of cooling synestias combined with dynamic, thermodynamic, and geochemical calculations, we show that satellite formation from a synestia can produce the main features of our Moon. We find that cooling drives mixing of the structure, and condensation generates moonlets that orbit within the synestia, surrounded by tens of bars of bulk silicate Earth vapor. The moonlets and growing moon are heated by the vapor until the first major element (Si) begins to vaporize and buffer the temperature. Moonlets equilibrate with bulk silicate Earth vapor at the temperature of silicate vaporization and the pressure of the structure, establishing the lunar isotopic composition and pattern of moderately volatile elements. Eventually, the cooling synestia recedes within the lunar orbit, terminating the main stage of lunar accretion. Our model shifts the paradigm for lunar origin from specifying a certain impact scenario to achieving a Moon-forming synestia. Giant impacts that produce potential Moon-forming synestias were common at the end of terrestrial planet formation.
机译:巨大的影响假设仍然是农历来源的主要理论。然而,目前的模型努力解释月球的组成和与地球同位素相似性。在这里,我们提出了一个新的月球原点模型。高能量,高角度巨大的撞击撞击可能会产生超过刻录物限制的后冲击结构,其定义了电气状体的最热状态和角动量。在典型的超级刻录物限制体中,地幔,大气和磁盘的传统定义不合适,身体形成了一种新型的行星结构,名为句子。使用冷却杂志的模拟结合动态,热力学和地球化学计算,我们表明,从句子中的卫星形成可以产生月球的主要特征。我们发现冷却驱动器的混合结构,并且冷凝产生了棘手内轨道的月亮,周围的散装硅酸盐地球蒸气括起来。月亮和成长月亮被蒸汽加热,直到第一主要元素(Si)开始蒸发和缓冲温度。月期在硅酸盐汽化温度和结构的压力下与散装硅酸盐地球蒸气平衡,建立月球同位素组成和中等挥发性元素的图案。最终,冷却句子在月球轨道内解回,终止月球增生的主要阶段。我们的模型将Lunar Origin的范例转移,从指定一定的影响方案,以实现成长的句子。产生潜在的月亮形成棘肌的巨大影响是陆地行星形成的末端。

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