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Impact basin relaxation as a probe for the thermal history of Pluto

机译:冲击盆松弛作为冥王星热史的探源

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We investigate viscoelastic impact basin relaxation on Pluto for a variety of thermal evolution scenarios encompassing both convective and conductive ice shells. Basins smaller than 200 km in diameter do not relax appreciably, while relaxation fractions can be up to ~60% for large impact basins. The main control on basin relaxation is the amount of radiogenic heat produced in the rocky core; our results are insensitive to the formation time of the basin, the ice reference viscosity adopted, and the presence/absence of a subsurface ocean. Other volatiles, such as CO_2 or NH_3, if present in the ice shell in sufficient quantities could increase the predicted relaxation fraction of basins. Relaxation causes extensional stresses interior to the basin; the orientation of the resulting tectonic features is controlled by the effective elastic thickness beneath the basin. Future observations of the relaxation states and tectonics of impact basins are therefore likely to provide a key constraint on Pluto's thermal history.
机译:我们研究了冥王星上粘弹性冲击盆地松弛的各种热演化情景,包括对流和导电冰壳。直径小于200 km的盆地没有明显的松弛,而大型冲击盆地的松弛率可高达〜60%。盆地松弛的主要控制是岩心中产生的放射热。我们的结果对盆地的形成时间,所采用的冰参考粘度以及是否存在地下海洋都不敏感。如果冰壳中存在足够量的其他挥发物,例如CO_2或NH_3,则可能会增加盆地的预计松弛率。松弛会引起盆地内部的张应力。构造特征的方向由盆地下方的有效弹性厚度控制。因此,对冲积池弛豫状态和构造的未来观察可能会为冥王星的热史提供关键的约束。

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