论文标题

火星地幔的电气和地震结构以及撞击生成异常的可检测性

Electrical and seismological structure of the martian mantle and the detectability of impact-generated anomalies

论文作者

Ruedas, Thomas, Breuer, Doris

论文摘要

我们得出合成电导率,地震速度和密度分布,从受到盆地形成陨石影响影响的火星地幔对流模型的结果。电导率的最小值是在强大的最高地幔中,夹在较低的地壳中较高的电导率之间,而在大于400 km的深度下,平滑的升高朝着几乎恒定的高值。整个地幔中的大部分声速大多会平稳,在$β$ - 橄榄石近1100公里深处的出现时,只有一个明显的变化。对影响的地下痕迹的可检测性的评估表明,至少在发生冲击摩尔质目标的有效熔体提取的情况下,至少在两个可观察物中都可以看到其特征,但即使对于大盆地来说,它也不总是特别明显。具有广泛的空间和时间覆盖率的观察将提高其可检测性。电磁声可能会提供另一种可能研究地幔特性的可能性,尤其是在冲击结构区域。与地震学和重量法相比,到目前为止,其在火星内部的应用几乎没有考虑。特别令人感兴趣的是它可能限制地幔的水含量的潜力。通过将冲击结构的电磁音响数据与模型预测进行比较,也可能可以回答开放的撞击生成熔体提取效率的问题。

We derive synthetic electrical conductivity, seismic velocity, and density distributions from the results of martian mantle convection models affected by basin-forming meteorite impacts. The electrical conductivity features an intermediate minimum in the strongly depleted topmost mantle, sandwiched between higher conductivities in the lower crust and a smooth increase toward almost constant high values at depths greater than 400 km. The bulk sound speed increases mostly smoothly throughout the mantle, with only one marked change at the appearance of $β$-olivine near 1100 km depth. An assessment of the detectability of the subsurface traces of an impact suggests that its signature would be visible in both observables at least if efficient melt extraction from the shock-molten target occurs, but it will not always be particularly conspicuous even for large basins; observations with extensive spatial and temporal coverage would improve their detectability. Electromagnetic sounding may offer another possibility to investigate the properties of the mantle, especially in regions of impact structures. In comparison with seismology and gravimetry, its application to the martian interior has received little consideration so far. Of particular interest is its potential for constraining the water content of the mantle. By comparing electromagnetic sounding data of an impact structure with model predictions, it might also be possible to answer the open question of the efficiency of extraction of impact-generated melt.

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