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Lunar Megaregolith Structure Revealed by GRAIL Gravity Data.


ABSTRACT: We use gravity data from NASA's GRAIL mission to characterize the porosity structure of the upper lunar crust. We analyze the gravitational anomalies produced by the porosity of craters with diameters D between 10 and 30 km. We find that the gravitational signature of craters changes significantly at D=16.4-0.6+1.4 km, which is related to a discrete change in porosity at a depth ∼3-5 km. We propose that this discrete porosity change reveals the location of the boundary between large-scale basin ejecta and the deeper less porous portion of the megaregolith, known as the structurally disturbed crust. The ejecta thickness can help constrain models of material transport and mixing on the Moon and, because the ejecta layer acts as an insulating blanket, models of heat flow and magmatism.

SUBMITTER: Izquierdo K 

PROVIDER: S-EPMC9287069 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Lunar Megaregolith Structure Revealed by GRAIL Gravity Data.

Izquierdo Kristel K   Sori Michael M MM   Soderblom Jason M JM   Johnson Brandon C BC   Wiggins Sean E SE  

Geophysical research letters 20211122 22


We use gravity data from NASA's GRAIL mission to characterize the porosity structure of the upper lunar crust. We analyze the gravitational anomalies produced by the porosity of craters with diameters <i>D</i> between 10 and 30 km. We find that the gravitational signature of craters changes significantly at D = 16 . 4 - 0.6 + 1.4 km, which is related to a discrete change in porosity at a depth ∼3-5 km. We propose that this discrete porosity change reveals the location of the boundary betwee  ...[more]

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