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首页> 外文期刊>Journal of geophysical research. Planets >Consequences of giant impacts in early Mars: Core merging and Martian dynamo evolution
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Consequences of giant impacts in early Mars: Core merging and Martian dynamo evolution

机译:火星早期巨人影响的后果:核心合并和火星发电机演变

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摘要

A giant impact is an increasingly popular explanation for the formation of the northern lowland on Mars. It is plausible that at the impact time both Mars and the impactor were differentiated with solid silicate mantles and liquid iron cores. Such a large impact likely resulted in merging of the cores of both bodies, a process which will have implications on the thermal state of the planet. Wemodel the evolution of the Martian mantle following a giant impact and characterize the thermochemical consequences of the sinking of an impactor's core as a single diapir. The impact heating and the viscous heating induced during the core merging may affect the early thermal state ofMars during several tens of million years. Our results show that large viscosity contrasts between the impactor's core and the surrounding mantle silicates can reduce the duration of the merging down to 1 kyr but do not modify the merging temperature. When the viscosity contrast between the diapir and the surrounding silicates is larger than a factor of 1000, the descent of the diapir can lead to some entrainment of the relatively shallow silicates to deepest regions close to the core-mantle boundary. Finally, the direct impact heating of Martian core leads to thermal stratification of the core and kills the core dynamo. It takes on the order of 150-200 Myr to reinitiate a strong dynamo anew. The merging of the impactor's core with the Martian core only delays the reinitiation of the dynamo for a very short time.
机译:巨大的影响是越来越受欢迎的解释,该解释是在火星上形成北部低地。在冲击时,火星和撞击器都用固体硅酸盐披风和液态铁芯分化是合理的。如此巨大的影响可能导致两种物体的核心合并,这一过程将对地球的热状态产生影响。 Wemodel在巨大的冲击力之后,火星地幔的演变表征了撞击器核心沉没的热化学后果,作为单个钻孔。在核心合并期间诱导的冲击加热和粘性加热可能会在数百万年内影响MARS的早期热状态。我们的结果表明,撞击器的核心与周围地幔硅酸盐之间的较大粘度对比可以将合并持续时间降低到1 kyr,但不会改变合并温度。当底流和周围硅酸盐之间的粘度对比大于1000倍时,钻石的下降可能会导致相对较浅的硅酸盐夹带到靠近核心掩护边界的最深区域。最后,火星核心的直接冲击加热导致核心的热分层并杀死核心发电机。它需要150-200 MYR的订单来重新开始强大的发电机。影响器的核心与火星核心的融合只会在很短的时间内延迟发电机的重新激活。

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