Literature DB >> 29755136

Ring faults and ring dikes around the Orientale basin on the Moon.

Jeffrey C Andrews-Hanna1, James W Head2, Brandon Johnson2, James T Keane3, Walter S Kiefer4, Patrick J McGovern4, Gregory A Neumann5, Mark A Wieczorek6, Maria T Zuber7.   

Abstract

The Orientale basin is the youngest and best-preserved multiring impact basin on the Moon, having experienced only modest modification by subsequent impacts and volcanism. Orientale is often treated as the type example of a multiring basin, with three prominent rings outside of the inner depression: the Inner Rook Montes, the Outer Rook Montes, and the Cordillera. Here we use gravity data from NASA's Gravity Recovery and Interior Laboratory (GRAIL) mission to reveal the subsurface structure of Orientale and its ring system. Gradients of the gravity data reveal a continuous ring dike intruded into the Outer Rook along the plane of the fault associated with the ring scarp. The volume of this ring dike is ~18 times greater than the volume of all extrusive mare deposits associated with the basin. The gravity gradient signature of the Cordillera ring indicates an offset along the fault across a shallow density interface, interpreted to be the base of the low-density ejecta blanket. Both gravity gradients and crustal thickness models indicate that the edge of the central cavity is shifted inward relative to the equivalent Inner Rook ring at the surface. Models of the deep basin structure show inflections along the crust-mantle interface at both the Outer Rook and Cordillera rings, indicating that the basin ring faults extend from the surface to at least the base of the crust. Fault dips range from 13-22° for the Cordillera fault in the northeastern quadrant, to 90° for the Outer Rook in the northwestern quadrant. The fault dips for both outer rings are lowest in the northeast, possibly due to the effects of either the direction of projectile motion or regional gradients in pre-impact crustal thickness. Similar ring dikes and ring faults are observed around the majority of lunar basins.

Entities:  

Year:  2017        PMID: 29755136      PMCID: PMC5939591          DOI: 10.1016/j.icarus.2017.12.012

Source DB:  PubMed          Journal:  Icarus        ISSN: 0019-1035            Impact factor:   3.508


  11 in total

1.  The origin of lunar mascon basins.

Authors:  H J Melosh; Andrew M Freed; Brandon C Johnson; David M Blair; Jeffrey C Andrews-Hanna; Gregory A Neumann; Roger J Phillips; David E Smith; Sean C Solomon; Mark A Wieczorek; Maria T Zuber
Journal:  Science       Date:  2013-05-30       Impact factor: 47.728

2.  The formation of peak rings in large impact craters.

Authors:  Joanna V Morgan; Sean P S Gulick; Timothy Bralower; Elise Chenot; Gail Christeson; Philippe Claeys; Charles Cockell; Gareth S Collins; Marco J L Coolen; Ludovic Ferrière; Catalina Gebhardt; Kazuhisa Goto; Heather Jones; David A Kring; Erwan Le Ber; Johanna Lofi; Xiao Long; Christopher Lowery; Claire Mellett; Rubén Ocampo-Torres; Gordon R Osinski; Ligia Perez-Cruz; Annemarie Pickersgill; Michael Poelchau; Auriol Rae; Cornelia Rasmussen; Mario Rebolledo-Vieyra; Ulrich Riller; Honami Sato; Douglas R Schmitt; Jan Smit; Sonia Tikoo; Naotaka Tomioka; Jaime Urrutia-Fucugauchi; Michael Whalen; Axel Wittmann; Kosei E Yamaguchi; William Zylberman
Journal:  Science       Date:  2016-11-18       Impact factor: 47.728

3.  Gravity field of the Orientale basin from the Gravity Recovery and Interior Laboratory Mission.

Authors:  Maria T Zuber; David E Smith; Gregory A Neumann; Sander Goossens; Jeffrey C Andrews-Hanna; James W Head; Walter S Kiefer; Sami W Asmar; Alexander S Konopliv; Frank G Lemoine; Isamu Matsuyama; H Jay Melosh; Patrick J McGovern; Francis Nimmo; Roger J Phillips; Sean C Solomon; G Jeffrey Taylor; Michael M Watkins; Mark A Wieczorek; James G Williams; Johanna C Jansen; Brandon C Johnson; James T Keane; Erwan Mazarico; Katarina Miljković; Ryan S Park; Jason M Soderblom; Dah-Ning Yuan
Journal:  Science       Date:  2016-10-27       Impact factor: 47.728

4.  Formation of the Orientale lunar multiring basin.

Authors:  Brandon C Johnson; David M Blair; Gareth S Collins; H Jay Melosh; Andrew M Freed; G Jeffrey Taylor; James W Head; Mark A Wieczorek; Jeffrey C Andrews-Hanna; Francis Nimmo; James T Keane; Katarina Miljković; Jason M Soderblom; Maria T Zuber
Journal:  Science       Date:  2016-10-27       Impact factor: 47.728

5.  Ancient igneous intrusions and early expansion of the Moon revealed by GRAIL gravity gradiometry.

Authors:  Jeffrey C Andrews-Hanna; Sami W Asmar; James W Head; Walter S Kiefer; Alexander S Konopliv; Frank G Lemoine; Isamu Matsuyama; Erwan Mazarico; Patrick J McGovern; H Jay Melosh; Gregory A Neumann; Francis Nimmo; Roger J Phillips; David E Smith; Sean C Solomon; G Jeffrey Taylor; Mark A Wieczorek; James G Williams; Maria T Zuber
Journal:  Science       Date:  2012-12-05       Impact factor: 47.728

6.  The crust of the Moon as seen by GRAIL.

Authors:  Mark A Wieczorek; Gregory A Neumann; Francis Nimmo; Walter S Kiefer; G Jeffrey Taylor; H Jay Melosh; Roger J Phillips; Sean C Solomon; Jeffrey C Andrews-Hanna; Sami W Asmar; Alexander S Konopliv; Frank G Lemoine; David E Smith; Michael M Watkins; James G Williams; Maria T Zuber
Journal:  Science       Date:  2012-12-05       Impact factor: 47.728

7.  Structure and evolution of the lunar Procellarum region as revealed by GRAIL gravity data.

Authors:  Jeffrey C Andrews-Hanna; Jonathan Besserer; James W Head; Carly J A Howett; Walter S Kiefer; Paul J Lucey; Patrick J McGovern; H Jay Melosh; Gregory A Neumann; Roger J Phillips; Paul M Schenk; David E Smith; Sean C Solomon; Maria T Zuber
Journal:  Nature       Date:  2014-10-02       Impact factor: 49.962

8.  The shape and internal structure of the moon from the clementine mission.

Authors:  M T Zuber; D E Smith; F G Lemoine; G A Neumann
Journal:  Science       Date:  1994-12-16       Impact factor: 47.728

9.  Peak-ring structure and kinematics from a multi-disciplinary study of the Schrödinger impact basin.

Authors:  David A Kring; Georgiana Y Kramer; Gareth S Collins; Ross W K Potter; Mitali Chandnani
Journal:  Nat Commun       Date:  2016-10-20       Impact factor: 14.919

10.  Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements.

Authors:  Gregory A Neumann; Maria T Zuber; Mark A Wieczorek; James W Head; David M H Baker; Sean C Solomon; David E Smith; Frank G Lemoine; Erwan Mazarico; Terence J Sabaka; Sander J Goossens; H Jay Melosh; Roger J Phillips; Sami W Asmar; Alexander S Konopliv; James G Williams; Michael M Sori; Jason M Soderblom; Katarina Miljković; Jeffrey C Andrews-Hanna; Francis Nimmo; Walter S Kiefer
Journal:  Sci Adv       Date:  2015-10-30       Impact factor: 14.136

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