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    Megaregolith evolution and cratering cataclysm models-—Lunar cataclysm as a misconception (28 years later)

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    Author
    Hartmann, W. K.
    Issue Date
    2003-01-01
    Keywords
    regolith evolution Moon
    Muonionalusta meteorite
    Stishovite
    shock metamorphism
    Cataclysm evidence against
    Megaregolith evolution model
    
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    Citation
    Hartmann, W. K. (2003). Megaregolith evolution and cratering cataclysm models—Lunar cataclysm as a misconception (28 years later). Meteoritics & Planetary Science, 38(4), 579-593.
    Publisher
    The Meteoritical Society
    Journal
    Meteoritics & Planetary Science
    URI
    http://hdl.handle.net/10150/655683
    DOI
    10.1111/j.1945-5100.2003.tb00028.x
    Additional Links
    https://meteoritical.org/
    Abstract
    The hypothesis of a lunar cataclysmic cratering episode between 3.8 and 3.9 Gyr ago lacks proof. Its strongest form proposes no cratering before about 4.0 Gyr, followed by catastrophic formation of most lunar craters and basins in 200 Myr. The premise that "zero impact melts implies zero impacts" is disproved by data from asteroids, on which early collisions clearly occurred, but from which early impact melts are scarce. Plausible cataclysm models imply that any cataclysm should have affected the whole inner solar system, but among available lunar and asteroid impact melt and impact age resetting data, a narrow, strong 3.8-3.9 Gyr spike in ages is seen only in the region sampled by Apollo/Luna. Reported lunar meteorite data do not show the spike. Asteroid data show a broader, milder peak, spreading from about 4.2 to 3.5 Gyr. These data suggest either that the spike in Apollo impact melt ages is associated with unique lunar front side events, or that the lunar meteorites data represent different kinds of events than the Apollo/Luna data. Here, we develop an alternate "megaregolith evolution" hypothesis to explain these data. In this hypothesis, early impact melts are absent not because there were no impacts, but because the high rate of early impacts led to their pulverization. The model estimates survival halflives of most lunar impact melts prior to 4.1 Gyr at <100 Myr. After a certain time, Tcritical ~4.0 Gyr, impact melts began to survive to the present. The age distribution differences among impact melts and plutonic rocks are controlled by, and hold clues to, the history of regolith evolution and the relative depths of sequestration of impact melts versus plutonic rocks, both among lunar and asteroidal samples. Both the "zero cratering, then cataclysm" hypothesis and the "megaregolith evolution" hypothesis require further testing, especially with lunar meteorite impact melt studies.
    Type
    Article
    text
    Language
    en
    ISSN
    1945-5100
    ae974a485f413a2113503eed53cd6c53
    10.1111/j.1945-5100.2003.tb00028.x
    Scopus Count
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    Meteoritics & Planetary Science, Volume 38, Number 4 (2003)

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