Literature DB >> 32341151

Global-scale brittle plastic rheology at the cometesimals merging of comet 67P/Churyumov-Gerasimenko.

Marco Franceschi1,2, Luca Penasa3, Matteo Massironi2,3, Giampiero Naletto4,3,5, Sabrina Ferrari3, Michele Fondriest2, Dennis Bodewits6, Carsten Güttler7, Alice Lucchetti8, Stefano Mottola9, Maurizio Pajola8, Imre Toth10, Jacob Deller7, Holger Sierks7, Cecilia Tubiana7.   

Abstract

Observations of comet nuclei indicate that the main constituent is a mix of ice and refractory materials characterized by high porosity (70-75%) and low bulk strength (10-4-10-6 MPa); however, the nature and physical properties of these materials remain largely unknown. By combining surface inspection of comet 67P/Churyumov-Gerasimenko and three-dimensional (3D) modeling of the independent concentric sets of layers that make up the structure of its two lobes, we provide clues about the large-scale rheological behavior of the nucleus and the kinematics of the impact that originated it. Large folds in the layered structure indicate that the merging of the two cometesimals involved reciprocal motion with dextral strike-slip kinematics that bent the layers in the contact area without obliterating them. Widespread long cracks and the evidence of relevant mass loss in absence of large density variations within the comet's body testify that large-scale deformation occurred in a brittle-plastic regime and was accommodated through folding and fracturing. Comparison of refined 3D geologic models of the lobes with triaxial ellipsoids that suitably represent the overall layers arrangement reveals characteristics that are consistent with an impact between two roughly ellipsoidal cometesimals that produced large-scale axial compression and transversal elongation. The observed features imply global transfer of impact-related shortening into transversal strain. These elements delineate a model for the global rheology of cometesimals that could be possible evoking a prominent bonding action of ice and, to a minor extent, organics.

Keywords:  67P/Churyumov–Gerasimenko; comet; deformation; impact; rheology

Year:  2020        PMID: 32341151      PMCID: PMC7229685          DOI: 10.1073/pnas.1914552117

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  9 in total

1.  Poisson's ratio and modern materials.

Authors:  G N Greaves; A L Greer; R S Lakes; T Rouxel
Journal:  Nat Mater       Date:  2011-10-24       Impact factor: 43.841

2.  Two independent and primitive envelopes of the bilobate nucleus of comet 67P.

Authors:  Matteo Massironi; Emanuele Simioni; Francesco Marzari; Gabriele Cremonese; Lorenza Giacomini; Maurizio Pajola; Laurent Jorda; Giampiero Naletto; Stephen Lowry; Mohamed Ramy El-Maarry; Frank Preusker; Frank Scholten; Holger Sierks; Cesare Barbieri; Philippe Lamy; Rafael Rodrigo; Detlef Koschny; Hans Rickman; Horst Uwe Keller; Michael F A'Hearn; Jessica Agarwal; Anne-Thérèse Auger; M Antonella Barucci; Jean-Loup Bertaux; Ivano Bertini; Sebastien Besse; Dennis Bodewits; Claire Capanna; Vania Da Deppo; Björn Davidsson; Stefano Debei; Mariolino De Cecco; Francesca Ferri; Sonia Fornasier; Marco Fulle; Robert Gaskell; Olivier Groussin; Pedro J Gutiérrez; Carsten Güttler; Stubbe F Hviid; Wing-Huen Ip; Jörg Knollenberg; Gabor Kovacs; Rainer Kramm; Ekkehard Kührt; Michael Küppers; Fiorangela La Forgia; Luisa M Lara; Monica Lazzarin; Zhong-Yi Lin; Josè J Lopez Moreno; Sara Magrin; Harald Michalik; Stefano Mottola; Nilda Oklay; Antoine Pommerol; Nicolas Thomas; Cecilia Tubiana; Jean-Baptiste Vincent
Journal:  Nature       Date:  2015-09-28       Impact factor: 49.962

3.  A homogeneous nucleus for comet 67P/Churyumov-Gerasimenko from its gravity field.

Authors:  M Pätzold; T Andert; M Hahn; S W Asmar; J-P Barriot; M K Bird; B Häusler; K Peter; S Tellmann; E Grün; P R Weissman; H Sierks; L Jorda; R Gaskell; F Preusker; F Scholten
Journal:  Nature       Date:  2016-02-04       Impact factor: 49.962

4.  Deep Impact: excavating comet Tempel 1.

Authors:  M F A'Hearn; M J S Belton; W A Delamere; J Kissel; K P Klaasen; L A McFadden; K J Meech; H J Melosh; P H Schultz; J M Sunshine; P C Thomas; J Veverka; D K Yeomans; M W Baca; I Busko; C J Crockett; S M Collins; M Desnoyer; C A Eberhardy; C M Ernst; T L Farnham; L Feaga; O Groussin; D Hampton; S I Ipatov; J-Y Li; D Lindler; C M Lisse; N Mastrodemos; W M Owen; J E Richardson; D D Wellnitz; R L White
Journal:  Science       Date:  2005-09-08       Impact factor: 47.728

5.  COMETARY NUCLEI. The shape and structure of cometary nuclei as a result of low-velocity accretion.

Authors:  M Jutzi; E Asphaug
Journal:  Science       Date:  2015-05-28       Impact factor: 47.728

6.  Cometary science. Dust measurements in the coma of comet 67P/Churyumov-Gerasimenko inbound to the Sun.

Authors:  Alessandra Rotundi; Holger Sierks; Vincenzo Della Corte; Marco Fulle; Pedro J Gutierrez; Luisa Lara; Cesare Barbieri; Philippe L Lamy; Rafael Rodrigo; Detlef Koschny; Hans Rickman; Horst Uwe Keller; José J López-Moreno; Mario Accolla; Jessica Agarwal; Michael F A'Hearn; Nicolas Altobelli; Francesco Angrilli; M Antonietta Barucci; Jean-Loup Bertaux; Ivano Bertini; Dennis Bodewits; Ezio Bussoletti; Luigi Colangeli; Massimo Cosi; Gabriele Cremonese; Jean-Francois Crifo; Vania Da Deppo; Björn Davidsson; Stefano Debei; Mariolino De Cecco; Francesca Esposito; Marco Ferrari; Sonia Fornasier; Frank Giovane; Bo Gustafson; Simon F Green; Olivier Groussin; Eberhard Grün; Carsten Güttler; Miguel L Herranz; Stubbe F Hviid; Wing Ip; Stavro Ivanovski; José M Jerónimo; Laurent Jorda; Joerg Knollenberg; Rainer Kramm; Ekkehard Kührt; Michael Küppers; Monica Lazzarin; Mark R Leese; Antonio C López-Jiménez; Francesca Lucarelli; Stephen C Lowry; Francesco Marzari; Elena Mazzotta Epifani; J Anthony M McDonnell; Vito Mennella; Harald Michalik; Antonio Molina; Rafael Morales; Fernando Moreno; Stefano Mottola; Giampiero Naletto; Nilda Oklay; José L Ortiz; Ernesto Palomba; Pasquale Palumbo; Jean-Marie Perrin; Julio Rodríguez; Lola Sabau; Colin Snodgrass; Roberto Sordini; Nicolas Thomas; Cecilia Tubiana; Jean-Baptiste Vincent; Paul Weissman; Klaus-Peter Wenzel; Vladimir Zakharov; John C Zarnecki
Journal:  Science       Date:  2015-01-23       Impact factor: 47.728

7.  Large heterogeneities in comet 67P as revealed by active pits from sinkhole collapse.

Authors:  Jean-Baptiste Vincent; Dennis Bodewits; Sébastien Besse; Holger Sierks; Cesare Barbieri; Philippe Lamy; Rafael Rodrigo; Detlef Koschny; Hans Rickman; Horst Uwe Keller; Jessica Agarwal; Michael F A'Hearn; Anne-Thérèse Auger; M Antonella Barucci; Jean-Loup Bertaux; Ivano Bertini; Claire Capanna; Gabriele Cremonese; Vania Da Deppo; Björn Davidsson; Stefano Debei; Mariolino De Cecco; Mohamed Ramy El-Maarry; Francesca Ferri; Sonia Fornasier; Marco Fulle; Robert Gaskell; Lorenza Giacomini; Olivier Groussin; Aurélie Guilbert-Lepoutre; P Gutierrez-Marques; Pedro J Gutiérrez; Carsten Güttler; Nick Hoekzema; Sebastian Höfner; Stubbe F Hviid; Wing-Huen Ip; Laurent Jorda; Jörg Knollenberg; Gabor Kovacs; Rainer Kramm; Ekkehard Kührt; Michael Küppers; Fiorangela La Forgia; Luisa M Lara; Monica Lazzarin; Vicky Lee; Cédric Leyrat; Zhong-Yi Lin; Josè J Lopez Moreno; Stephen Lowry; Sara Magrin; Lucie Maquet; Simone Marchi; Francesco Marzari; Matteo Massironi; Harald Michalik; Richard Moissl; Stefano Mottola; Giampiero Naletto; Nilda Oklay; Maurizio Pajola; Frank Preusker; Frank Scholten; Nicolas Thomas; Imre Toth; Cecilia Tubiana
Journal:  Nature       Date:  2015-07-02       Impact factor: 49.962

8.  COMETARY SCIENCE. Thermal and mechanical properties of the near-surface layers of comet 67P/Churyumov-Gerasimenko.

Authors:  T Spohn; J Knollenberg; A J Ball; M Banaszkiewicz; J Benkhoff; M Grott; J Grygorczuk; C Hüttig; A Hagermann; G Kargl; E Kaufmann; N Kömle; E Kührt; K J Kossacki; W Marczewski; I Pelivan; R Schrödter; K Seiferlin
Journal:  Science       Date:  2015-07-31       Impact factor: 47.728

9.  Fission and reconfiguration of bilobate comets as revealed by 67P/Churyumov-Gerasimenko.

Authors:  Masatoshi Hirabayashi; Daniel J Scheeres; Steven R Chesley; Simone Marchi; Jay W McMahon; Jordan Steckloff; Stefano Mottola; Shantanu P Naidu; Timothy Bowling
Journal:  Nature       Date:  2016-06-01       Impact factor: 49.962

  9 in total

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