Literature DB >> 31631900

The Surface Distributions of the Production of the Major Volatile Species, H2O, CO2, CO and O2, from the Nucleus of Comet 67P/Churyumov-Gerasimenko throughout the Rosetta Mission as Measured by the ROSINA Double Focusing Mass Spectrometer.

Michael Combi1, Yinsi Shou1, Nicolas Fougere1, Valeriy Tenishev1, Kathrin Altwegg2, Martin Rubin2, Dominique Bockelée-Morvan3, Fabrizio Capaccioni4, Yu-Chi Cheng3, Uwe Fink5, Tamas Gombosi1, Kenneth C Hansen1, Zhenguang Huang1, David Marshall6, Gabor Toth1.   

Abstract

The Rosetta Orbiter Spectrometer for Ion and Neutral Analysis (ROSINA) suite of instruments operated throughout the over two years of the Rosetta mission operations in the vicinity of comet 67P/Churyumov-Gerasimenko. It measured gas densities and composition throughout the comet's atmosphere, or coma. Here we present two-years' worth of measurements of the relative densities of the four major volatile species in the coma of the comet, H2O, CO2, CO and O2, by one of the ROSINA sub-systems called the Double Focusing Mass Spectrometer (DFMS). The absolute total gas densities were provided by the Comet Pressure Sensor (COPS), another ROSINA sub-system. DFMS is a very high mass resolution and high sensitivity mass spectrometer able to resolve at a tiny fraction of an atomic mass unit. We have analyzed the combined DFMS and COPS measurements using an inversion scheme based on spherical harmonics that solves for the distribution of potential surface activity of each species as the comet rotates, changing solar illumination, over short time intervals and as the comet changes distance from the sun and orientation of its spin axis over long time intervals. We also use the surface boundary conditions derived from the inversion scheme to simulate the whole coma with our fully kinetic Direct Simulation Monte Carlo model and calculate the production rates of the four major species throughout the mission. We compare the derived production rates with revised remote sensing observations by the Visible and Infrared Thermal Imaging Spectrometer (VIRTIS) as well as with published observations from the Microwave Instrument for the Rosetta Orbiter (MIRO). Finally we use the variation of the surface production of the major species to calculate the total mass loss over the mission and, for different estimates of the dust/gas ratio, calculate the variation of surface loss all over the nucleus.

Entities:  

Keywords:  Atmospheres, structure; Comets; Comets, coma; Comets, nucleus

Year:  2020        PMID: 31631900      PMCID: PMC6800715          DOI: 10.1016/j.icarus.2019.113421

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


  8 in total

1.  The diurnal cycle of water ice on comet 67P/Churyumov-Gerasimenko.

Authors:  M C De Sanctis; F Capaccioni; M Ciarniello; G Filacchione; M Formisano; S Mottola; A Raponi; F Tosi; D Bockelée-Morvan; S Erard; C Leyrat; B Schmitt; E Ammannito; G Arnold; M A Barucci; M Combi; M T Capria; P Cerroni; W-H Ip; E Kuehrt; T B McCord; E Palomba; P Beck; E Quirico
Journal:  Nature       Date:  2015-09-24       Impact factor: 49.962

2.  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

3.  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

4.  Rosetta's comet 67P/Churyumov-Gerasimenko sheds its dusty mantle to reveal its icy nature.

Authors:  S Fornasier; S Mottola; H U Keller; M A Barucci; B Davidsson; C Feller; J D P Deshapriya; H Sierks; C Barbieri; P L Lamy; R Rodrigo; D Koschny; H Rickman; M A'Hearn; J Agarwal; J-L Bertaux; I Bertini; S Besse; G Cremonese; V Da Deppo; S Debei; M De Cecco; J Deller; M R El-Maarry; M Fulle; O Groussin; P J Gutierrez; C Güttler; M Hofmann; S F Hviid; W-H Ip; L Jorda; J Knollenberg; G Kovacs; R Kramm; E Kührt; M Küppers; M L Lara; M Lazzarin; J J Lopez Moreno; F Marzari; M Massironi; G Naletto; N Oklay; M Pajola; A Pommerol; F Preusker; F Scholten; X Shi; N Thomas; I Toth; C Tubiana; J-B Vincent
Journal:  Science       Date:  2016-11-17       Impact factor: 47.728

5.  Abundant molecular oxygen in the coma of comet 67P/Churyumov-Gerasimenko.

Authors:  A Bieler; K Altwegg; H Balsiger; A Bar-Nun; J-J Berthelier; P Bochsler; C Briois; U Calmonte; M Combi; J De Keyser; E F van Dishoeck; B Fiethe; S A Fuselier; S Gasc; T I Gombosi; K C Hansen; M Hässig; A Jäckel; E Kopp; A Korth; L Le Roy; U Mall; R Maggiolo; B Marty; O Mousis; T Owen; H Rème; M Rubin; T Sémon; C-Y Tzou; J H Waite; C Walsh; P Wurz
Journal:  Nature       Date:  2015-10-29       Impact factor: 49.962

6.  Molecular nitrogen in comet 67P/Churyumov-Gerasimenko indicates a low formation temperature.

Authors:  M Rubin; K Altwegg; H Balsiger; A Bar-Nun; J-J Berthelier; A Bieler; P Bochsler; C Briois; U Calmonte; M Combi; J De Keyser; F Dhooghe; P Eberhardt; B Fiethe; S A Fuselier; S Gasc; T I Gombosi; K C Hansen; M Hässig; A Jäckel; E Kopp; A Korth; L Le Roy; U Mall; B Marty; O Mousis; T Owen; H Rème; T Sémon; C-Y Tzou; J H Waite; P Wurz
Journal:  Science       Date:  2015-03-19       Impact factor: 47.728

7.  Cometary science. Time variability and heterogeneity in the coma of 67P/Churyumov-Gerasimenko.

Authors:  M Hässig; K Altwegg; H Balsiger; A Bar-Nun; J J Berthelier; A Bieler; P Bochsler; C Briois; U Calmonte; M Combi; J De Keyser; P Eberhardt; B Fiethe; S A Fuselier; M Galand; S Gasc; T I Gombosi; K C Hansen; A Jäckel; H U Keller; E Kopp; A Korth; E Kührt; L Le Roy; U Mall; B Marty; O Mousis; E Neefs; T Owen; H Rème; M Rubin; T Sémon; C Tornow; C-Y Tzou; J H Waite; P Wurz
Journal:  Science       Date:  2015-01-22       Impact factor: 47.728

8.  COMETARY SCIENCE. Properties of the 67P/Churyumov-Gerasimenko interior revealed by CONSERT radar.

Authors:  Wlodek Kofman; Alain Herique; Yves Barbin; Jean-Pierre Barriot; Valérie Ciarletti; Stephen Clifford; Peter Edenhofer; Charles Elachi; Christelle Eyraud; Jean-Pierre Goutail; Essam Heggy; Laurent Jorda; Jérémie Lasue; Anny-Chantal Levasseur-Regourd; Erling Nielsen; Pierre Pasquero; Frank Preusker; Pascal Puget; Dirk Plettemeier; Yves Rogez; Holger Sierks; Christoph Statz; Hakan Svedhem; Iwan Williams; Sonia Zine; Jakob Van Zyl
Journal:  Science       Date:  2015-07-31       Impact factor: 47.728

  8 in total
  2 in total

Review 1.  Cometary Comae-Surface Links: The Physics of Gas and Dust from the Surface to a Spacecraft.

Authors:  Raphael Marschall; Yuri Skorov; Vladimir Zakharov; Ladislav Rezac; Selina-Barbara Gerig; Chariton Christou; S Kokou Dadzie; Alessandra Migliorini; Giovanna Rinaldi; Jessica Agarwal; Jean-Baptiste Vincent; David Kappel
Journal:  Space Sci Rev       Date:  2020-11-06       Impact factor: 8.017

Review 2.  On the Origin and Evolution of the Material in 67P/Churyumov-Gerasimenko.

Authors:  Martin Rubin; Cécile Engrand; Colin Snodgrass; Paul Weissman; Kathrin Altwegg; Henner Busemann; Alessandro Morbidelli; Michael Mumma
Journal:  Space Sci Rev       Date:  2020-07-30       Impact factor: 8.017

  2 in total

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