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Dunes on pluto

  • Matt W. Telfer
  • , J. R. Parteli
  • , Jani Radebaugh
  • , Ross A. Beyer
  • , Tanguy Bertrand
  • , François Forget
  • , Francis Nimmo
  • , Will M. Grundy
  • , Jeffrey M. Moore
  • , S. Alan Stern
  • , John Spencer
  • , Tod R. Lauer
  • , Alissa M. Earle
  • , Richard P. Binzel
  • , Hal A. Weaver
  • , Cathy B. Olkin
  • , Leslie A. Young
  • , Kimberly Ennico
  • , Kirby Runyon
  • University of Plymouth
  • Germany; University of Cologne
  • Brigham Young University
  • SETI Institute
  • NASA Ames Research Center
  • Université Pierre et Marie Curie
  • University of California, Santa Cruz
  • Lowell Observatory
  • Southwest Research Institute
  • National Optical Astronomy Observatory
  • Massachusetts Institute of Technology
  • Johns Hopkins University Applied Physics Laboratory

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The surface of Pluto is more geologically diverse and dynamic than had been expected, but the role of its tenuous atmosphere in shaping the landscape remains unclear. We describe observations from the New Horizons spacecraft of regularly spaced, linear ridges whose morphology, distribution, and orientation are consistent with being transverse dunes. These are located close to mountainous regions and are orthogonal to nearby wind streaks. We demonstrate that the wavelength of the dunes (~0.4 to 1 kilometer) is best explained by the deposition of sand-sized (~200 to ~300 micrometer) particles of methane ice in moderate winds (<10 meters per second). The undisturbed morphology of the dunes, and relationships with the underlying convective glacial ice, imply that the dunes have formed in the very recent geological past.

langue originaleAnglais
Pages (de - à)992-997
Nombre de pages6
journalScience
Volume360
Numéro de publication6392
Les DOIs
étatPublié - 1 juin 2018

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