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Observational constraints on the identification of shallow lunar magmatism:insights from floor-fractured craters

机译:浅层岩浆活动识别的观测限制:地面破裂的火山口的见解

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摘要

Floor-fractured craters are a class of lunar crater hypothesized to form in response to the emplacement of a shallow magmatic intrusion beneath the crater floor. The emplacement of a shallow magmatic body should result in a positive Bouguer anomaly relative to unaltered complex craters, a signal which is observed for the average Bouguer anomaly interior to the crater walls. We observe the Bouguer anomaly of floor-fractured craters on an individual basis using the unfiltered Bouguer gravity solution from GRAIL and also a degree 100-600 band-filtered Bouguer gravity solution. The low-magnitude of anomalies arising from shallow magmatic intrusions makes identification using unfiltered Bouguer gravity solutions inconclusive. The observed anomalies in the degree 100-600 Bouguer gravity solution are spatially heterogeneous, although there is spatial correlation between volcanic surface morphologies and positive Bouguer anomalies. We interpret these observations to mean that the spatial heterogeneity observed in the Bouguer signal is the result of variable degrees of magmatic degassing within the intrusions.
机译:地面破裂的陨石坑是一类月球陨石坑,被认为是对陨石坑底板下方浅岩浆侵入的形成而形成的。相对于未改变的复杂环形山,浅岩浆体的位置应导致正布格异常,这是在环形山壁内部平均布格异常中观察到的信号。我们使用来自GRAIL的未过滤的布格重力解决方案以及100-600度带状过滤的布格重力解决方案,逐个观察楼板破裂的火山口的布格异常。由浅层岩浆侵入引起的低等距异常使得使用未过滤的布格重力解的识别没有结论性。尽管在火山表面形态与正布格异常之间存在空间相关性,但是在100-600布格重力解决方案中观察到的异常在空间上是不均匀的。我们将这些观察解释为意味着在布格信号中观察到的空间异质性是侵入体内岩浆脱气程度不同的结果。

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