Cargando…

Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements

Observations from the Gravity Recovery and Interior Laboratory (GRAIL) mission indicate a marked change in the gravitational signature of lunar impact structures at the morphological transition, with increasing diameter, from complex craters to peak-ring basins. At crater diameters larger than ~200...

Descripción completa

Detalles Bibliográficos
Autores principales: Neumann, Gregory A., Zuber, Maria T., Wieczorek, Mark A., Head, James W., Baker, David M. H., Solomon, Sean C., Smith, David E., Lemoine, Frank G., Mazarico, Erwan, Sabaka, Terence J., Goossens, Sander J., Melosh, H. Jay, Phillips, Roger J., Asmar, Sami W., Konopliv, Alexander S., Williams, James G., Sori, Michael M., Soderblom, Jason M., Miljković, Katarina, Andrews-Hanna, Jeffrey C., Nimmo, Francis, Kiefer, Walter S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4646831/
https://www.ncbi.nlm.nih.gov/pubmed/26601317
http://dx.doi.org/10.1126/sciadv.1500852
_version_ 1782400992237584384
author Neumann, Gregory A.
Zuber, Maria T.
Wieczorek, Mark A.
Head, James W.
Baker, David M. H.
Solomon, Sean C.
Smith, David E.
Lemoine, Frank G.
Mazarico, Erwan
Sabaka, Terence J.
Goossens, Sander J.
Melosh, H. Jay
Phillips, Roger J.
Asmar, Sami W.
Konopliv, Alexander S.
Williams, James G.
Sori, Michael M.
Soderblom, Jason M.
Miljković, Katarina
Andrews-Hanna, Jeffrey C.
Nimmo, Francis
Kiefer, Walter S.
author_facet Neumann, Gregory A.
Zuber, Maria T.
Wieczorek, Mark A.
Head, James W.
Baker, David M. H.
Solomon, Sean C.
Smith, David E.
Lemoine, Frank G.
Mazarico, Erwan
Sabaka, Terence J.
Goossens, Sander J.
Melosh, H. Jay
Phillips, Roger J.
Asmar, Sami W.
Konopliv, Alexander S.
Williams, James G.
Sori, Michael M.
Soderblom, Jason M.
Miljković, Katarina
Andrews-Hanna, Jeffrey C.
Nimmo, Francis
Kiefer, Walter S.
author_sort Neumann, Gregory A.
collection PubMed
description Observations from the Gravity Recovery and Interior Laboratory (GRAIL) mission indicate a marked change in the gravitational signature of lunar impact structures at the morphological transition, with increasing diameter, from complex craters to peak-ring basins. At crater diameters larger than ~200 km, a central positive Bouguer anomaly is seen within the innermost peak ring, and an annular negative Bouguer anomaly extends outward from this ring to the outer topographic rim crest. These observations demonstrate that basin-forming impacts remove crustal materials from within the peak ring and thicken the crust between the peak ring and the outer rim crest. A correlation between the diameter of the central Bouguer gravity high and the outer topographic ring diameter for well-preserved basins enables the identification and characterization of basins for which topographic signatures have been obscured by superposed cratering and volcanism. The GRAIL inventory of lunar basins improves upon earlier lists that differed in their totals by more than a factor of 2. The size-frequency distributions of basins on the nearside and farside hemispheres of the Moon differ substantially; the nearside hosts more basins larger than 350 km in diameter, whereas the farside has more smaller basins. Hemispherical differences in target properties, including temperature and porosity, are likely to have contributed to these different distributions. Better understanding of the factors that control basin size will help to constrain models of the original impactor population.
format Online
Article
Text
id pubmed-4646831
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher American Association for the Advancement of Science
record_format MEDLINE/PubMed
spelling pubmed-46468312015-11-23 Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements Neumann, Gregory A. Zuber, Maria T. Wieczorek, Mark A. Head, James W. Baker, David M. H. Solomon, Sean C. Smith, David E. Lemoine, Frank G. Mazarico, Erwan Sabaka, Terence J. Goossens, Sander J. Melosh, H. Jay Phillips, Roger J. Asmar, Sami W. Konopliv, Alexander S. Williams, James G. Sori, Michael M. Soderblom, Jason M. Miljković, Katarina Andrews-Hanna, Jeffrey C. Nimmo, Francis Kiefer, Walter S. Sci Adv Research Articles Observations from the Gravity Recovery and Interior Laboratory (GRAIL) mission indicate a marked change in the gravitational signature of lunar impact structures at the morphological transition, with increasing diameter, from complex craters to peak-ring basins. At crater diameters larger than ~200 km, a central positive Bouguer anomaly is seen within the innermost peak ring, and an annular negative Bouguer anomaly extends outward from this ring to the outer topographic rim crest. These observations demonstrate that basin-forming impacts remove crustal materials from within the peak ring and thicken the crust between the peak ring and the outer rim crest. A correlation between the diameter of the central Bouguer gravity high and the outer topographic ring diameter for well-preserved basins enables the identification and characterization of basins for which topographic signatures have been obscured by superposed cratering and volcanism. The GRAIL inventory of lunar basins improves upon earlier lists that differed in their totals by more than a factor of 2. The size-frequency distributions of basins on the nearside and farside hemispheres of the Moon differ substantially; the nearside hosts more basins larger than 350 km in diameter, whereas the farside has more smaller basins. Hemispherical differences in target properties, including temperature and porosity, are likely to have contributed to these different distributions. Better understanding of the factors that control basin size will help to constrain models of the original impactor population. American Association for the Advancement of Science 2015-10-30 /pmc/articles/PMC4646831/ /pubmed/26601317 http://dx.doi.org/10.1126/sciadv.1500852 Text en Copyright © 2015, The Authors http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Neumann, Gregory A.
Zuber, Maria T.
Wieczorek, Mark A.
Head, James W.
Baker, David M. H.
Solomon, Sean C.
Smith, David E.
Lemoine, Frank G.
Mazarico, Erwan
Sabaka, Terence J.
Goossens, Sander J.
Melosh, H. Jay
Phillips, Roger J.
Asmar, Sami W.
Konopliv, Alexander S.
Williams, James G.
Sori, Michael M.
Soderblom, Jason M.
Miljković, Katarina
Andrews-Hanna, Jeffrey C.
Nimmo, Francis
Kiefer, Walter S.
Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title_full Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title_fullStr Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title_full_unstemmed Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title_short Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements
title_sort lunar impact basins revealed by gravity recovery and interior laboratory measurements
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4646831/
https://www.ncbi.nlm.nih.gov/pubmed/26601317
http://dx.doi.org/10.1126/sciadv.1500852
work_keys_str_mv AT neumanngregorya lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT zubermariat lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT wieczorekmarka lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT headjamesw lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT bakerdavidmh lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT solomonseanc lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT smithdavide lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT lemoinefrankg lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT mazaricoerwan lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT sabakaterencej lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT goossenssanderj lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT meloshhjay lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT phillipsrogerj lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT asmarsamiw lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT konoplivalexanders lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT williamsjamesg lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT sorimichaelm lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT soderblomjasonm lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT miljkovickatarina lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT andrewshannajeffreyc lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT nimmofrancis lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements
AT kieferwalters lunarimpactbasinsrevealedbygravityrecoveryandinteriorlaboratorymeasurements