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Lower atmosphere and pressure evolution on Pluto from ground-based stellar occultations, 1988-2016

  • E. Meza
  • , B. Sicardy
  • , M. Assafin
  • , J. L. Ortiz
  • , T. Bertrand
  • , E. Lellouch
  • , J. Desmars
  • , F. Forget
  • , D. Bérard
  • , A. Doressoundiram
  • , J. Lecacheux
  • , J. Marques Oliveira
  • , F. Roques
  • , T. Widemann
  • , F. Colas
  • , F. Vachier
  • , S. Renner
  • , R. Leiva
  • , F. Braga-Ribas
  • , G. Benedetti-Rossi
  • J. I.B. Camargo, A. Dias-Oliveira, B. Morgado, A. R. Gomes-Júnior, R. Vieira-Martins, R. Behrend, A. Castro Tirado, R. Duffard, N. Morales, P. Santos-Sanz, M. Jelínek, R. Cunniffe, R. Querel, M. Harnisch, R. Jansen, A. Pennell, S. Todd, V. D. Ivanov, C. Opitom, M. Gillon, E. Jehin, J. Manfroid, J. Pollock, D. E. Reichart, J. B. Haislip, K. M. Ivarsen, A. P. LaCluyze, A. Maury, R. Gil-Hutton, V. Dhillon, S. Littlefair, T. Marsh, C. Veillet, K. L. Bath, W. Beisker, H. J. Bode, M. Kretlow, D. Herald, D. Gault, S. Kerr, H. Pavlov, O. Faragó, O. Klös, E. Frappa, M. Lavayssière, A. A. Cole, A. B. Giles, J. G. Greenhill, K. M. Hill, M. W. Buie, C. B. Olkin, E. F. Young, L. A. Young, L. H. Wasserman, M. Devogèle, R. G. French, F. B. Bianco, F. Marchis, N. Brosch, S. Kaspi, D. Polishook, I. Manulis, M. Ait Moulay Larbi, Z. Benkhaldoun, A. Daassou, Y. El Azhari, Y. Moulane, J. Broughton, J. Milner, T. Dobosz, G. Bolt, B. Lade, A. Gilmore, P. Kilmartin, W. H. Allen, P. B. Graham, B. Loader, G. McKay, J. Talbot, S. Parker, L. Abe, P. Bendjoya, J. P. Rivet, D. Vernet, L. Di Fabrizio, V. Lorenzi, A. Magazzú, E. Molinari, K. Gazeas, L. Tzouganatos, A. Carbognani, G. Bonnoli, A. Marchini, G. Leto, R. Zanmar Sanchez, L. Mancini, B. Kattentidt, M. Dohrmann, K. Guhl, W. Rothe, K. Walzel, G. Wortmann, A. Eberle, D. Hampf, J. Ohlert, G. Krannich, G. Murawsky, B. Gährken, D. Gloistein, S. Alonso, A. Román, J. E. Communal, F. Jabet, S. DeVisscher, J. Sérot, T. Janik, Z. Moravec, P. MacHado, A. Selva, C. Perelló, J. Rovira, M. Conti, R. Papini, F. Salvaggio, A. Noschese, V. Tsamis, K. Tigani, P. Barroy, M. Irzyk, D. Neel, J. P. Godard, D. Lanoiselée, P. Sogorb, D. Vérilhac, M. Bretton, F. Signoret, F. Ciabattari, R. Naves, M. Boutet, J. De Queiroz, P. Lindner, K. Lindner, P. Enskonatus, G. Dangl, T. Tordai, H. Eichler, J. Hattenbach, C. Peterson, L. A. Molnar, R. R. Howell
  • Sorbonne Univ.
  • Instituto de Biofisica da UFRJ
  • Laboratório Interinstitucional de E-Astronomia - LIneA
  • Instituto de Astrofísica de Andalucía-CSIC
  • NASA Ames Research Center
  • Institut de Mécanique Céleste
  • Université de Lille
  • Southwest Research Institute
  • CEFET-PR
  • Université de Genève
  • Astronomical Institute, Academy of Sciences of the Czech Republic v.v.i.
  • Institute of Physics of the Czech Academy of Sciences
  • NIWA
  • Occultation Section of the Royal Astronomical Society of New Zealand (RASNZ)
  • Dunedin Astronomical Society
  • European Southern Observatory Santiago
  • University of Liège
  • Appalachian State University
  • University of North Carolina
  • Central Michigan University
  • San Pedro de Atacama Celestial Explorations
  • Universidad Nacional de San Juan
  • The University of Sheffield
  • Instituto de Astrofisica de Canarias
  • University of Warwick
  • Large Binocular Telescope Observatory
  • Internationale Amateursternwarte (IAS) E. V.
  • International Occultation Timing Association - European Section (IOTA/ES)
  • International Occultation Timing Association (IOTA)
  • Canberra Astronomical Society
  • Western Sydney Amateur Astronomy Group (WSAAG)
  • Kuriwa Observatory
  • Astronomical Association of Queensland
  • Euraster
  • University of Tasmania
  • Lowell Observatory
  • Wellesley College
  • University of Delaware
  • New York University
  • SETI Institute
  • Tel Aviv University
  • Weizmann Institute of Science Israel
  • Université Cadi Ayyad
  • BANKSTOWN
  • Craigie
  • Astronomical Society of South Australia
  • University of Canterbury Mount John Observatory
  • Wellington Astronomical Society (WAS)
  • Southland Astronomical Society
  • Université Côte d’Azur
  • INAF - Telescopio Nazionale Galileo
  • INAF -Osservatorio Astronomico di Cagliari
  • University of Athens
  • Astronomical Observatory of the Autonomous Region of the Aosta Valley (OAVdA)
  • University of Siena
  • INAF Osservatorio Astrofisico di Catania
  • University of Rome “Tor Vergata”
  • Max-Planck-Institut für Astronomie
  • Istituto di Astrofisica e Planetologia Spaziali (IAPS)
  • International Institute for Advanced Scientific Studies (IIASS)
  • Archenhold Sternwarte
  • Schwäbische Sternwarte E.V.
  • Astronomie Stiftung Trebur
  • University of Applied Sciences
  • Roof Observatory Kaufering
  • Gabriel Murawski Private Observatory (SOTES)
  • Stallhofen Observatory
  • University of Granada
  • Sociedad Astronómica Granadina
  • Raptor Photonics Llt
  • AiryLab SARL
  • ENAC-IIC-GEL
  • Clermont-Auvergne University
  • Teplice Observatory
  • Faculdade de Ciências, Universidade de Lisboa
  • S/n
  • Astrocampania
  • Ellinogermaniki Agogi School Observatory (MPC C68)
  • Télescope Jean-Marc Salomon
  • Maison Communal
  • Observatoire des Baronnies Provençales
  • GAPRA
  • Osservatorio Astronomico di Monte Agliale
  • Observatoire des Pléiades
  • Beobachtergruppe Sternwarte Deutsches Museum
  • Cloudbait Observatory
  • Calvin College
  • University of Wyoming

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

43 Citations (Scopus)

Résumé

Context. The tenuous nitrogen (N2) atmosphere on Pluto undergoes strong seasonal effects due to high obliquity and orbital eccentricity, and has recently (July 2015) been observed by the New Horizons spacecraft. Aims. The main goals of this study are (i) to construct a well calibrated record of the seasonal evolution of surface pressure on Pluto and (ii) to constrain the structure of the lower atmosphere using a central flash observed in 2015. Methods. Eleven stellar occultations by Pluto observed between 2002 and 2016 are used to retrieve atmospheric profiles (density, pressure, temperature) between altitude levels of ∼5 and ∼380 km (i.e. pressures from ∼10 μbar to 10 nbar). Results. (i) Pressure has suffered a monotonic increase from 1988 to 2016, that is compared to a seasonal volatile transport model, from which tight constraints on a combination of albedo and emissivity of N2 ice are derived. (ii) A central flash observed on 2015 June 29 is consistent with New Horizons REX profiles, provided that (a) large diurnal temperature variations (not expected by current models) occur over Sputnik Planitia; and/or (b) hazes with tangential optical depth of ∼0.3 are present at 4-7 km altitude levels; and/or (c) the nominal REX density values are overestimated by an implausibly large factor of ∼20%; and/or (d) higher terrains block part of the flash in the Charon facing hemisphere.

langue originaleAnglais
Numéro d'articleA42
journalAstronomy and Astrophysics
Volume625
Les DOIs
étatPublié - 1 janv. 2019

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