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Explosive volcanism in complex impact craters on Mercury and the Moon: influence of tectonic regime on depth of magmatic intrusion

机译:复杂撞击水星和月球陨石坑的爆炸性火山活动:构造体制对岩浆侵入深度的影响

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摘要

Vents and deposits attributed to explosive volcanism occur within numerous impact craters on both the Moon and Mercury. Given the similarities between the two bodies it is probable that similar processes control this spatial association on both. However, the precise morphology and localization of the activity differs on the two bodies, indicating that the nature of structures beneath impact craters and/or volcanic activity may also be different. To explore this, we analyze sites of explosive volcanism within complex impact craters on the Moon and Mercury, comparing the scale and localization of volcanic activity and evidence for post-formation modification of the host crater. We show that the scale of vents and deposits is consistently greater on Mercury than on the Moon, indicating greater eruption energy, powered by a higher concentration of volatiles. Additionally, while the floors of lunar craters hosting explosive volcanism are commonly fractured, those on Mercury are not. The most probable explanation for these differences is that the state of regional compression acting on Mercury's crust through most of the planet's history results in deeper magma storage beneath craters on Mercury than on the Moon. The probable role of the regional stress regime in dictating the depth of intrusion on Mercury suggests that it may also play a role in the depth of sub-crater intrusion on the Moon and on other planetary bodies. Examples on the Moon (and also on Mars) commonly occur at locations where flexural extension may facilitate shallower intrusion than would be driven by the buoyancy of the magma alone.
机译:月球和水星的众多撞击坑内都发生了由火山爆发引起的喷发和沉积。考虑到两个物体之间的相似性,很可能相似的过程会控制两个物体上的这种空间关联。但是,在两个物体上,活动的精确形态和位置不同,这表明撞击坑和/或火山活动下的结构性质也可能不同。为了探索这一点,我们分析了月球和水星上复杂的撞击坑内的火山爆发地点,比较了火山活动的规模和局部性以及宿主火山口形成后变质的证据。我们表明,汞的排放孔和沉积物的规模始终大于月球,这表明更大的喷发能量由更高浓度的挥发物驱动。此外,尽管承载爆炸性火山活动的月球陨石坑的地板通常会破裂,但水星上的火山口却不会破裂。对于这些差异的最可能解释是,在整个地球历史上,水星地壳受到区域压缩的状态导致在水星陨石坑下方比在月球上更深的岩浆储存。区域应力制度可能在决定水银入侵深度方面可能发挥了作用,这表明它也可能在月球陨石坑对月球和其他行星体的入侵深度中发挥作用。月球(以及火星)上的例子通常发生在与仅由岩浆的浮力驱动相比,弯曲延伸可能有助于更浅的侵入的位置。

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