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Earth Science

D-Index
54
Citations
11906
World Ranking
2671
National Ranking
1111

Overview

Erwan Mazarico is affiliated with the Goddard Space Flight Center in the United States, where they focus on research primarily within the fields of Physics and Astronomy. Their work spans several subfields, notably Astronomy and Astrophysics, Aerospace Engineering, Atmospheric Science, Molecular Biology, and Oceanography.

Their research topics concentrate on Planetary Science and Exploration, Astro and Planetary Science, and Space Exploration and Technology. Related areas of study include Geology and Paleoclimatology Research, Geomagnetism and Paleomagnetism Studies, Space Satellite Systems and Control, and Space Science and Extraterrestrial Life.

Mazarico's recent publications demonstrate diverse contributions to planetary and space sciences. These include the following papers:

  • Improved LOLA elevation maps for south pole landing sites: Error estimates and their impact on illumination conditions, 2020, Planetary and Space Science
  • Heterogeneous mass distribution of the rubble-pile asteroid (101955) Bennu, 2020, Science Advances
  • Ground and In-Flight Calibration of the OSIRIS-REx Camera Suite, 2020, Space Science Reviews
  • Hemispherical differences in the shape and topography of asteroid (101955) Bennu, 2020, Science Advances
  • Volatile interactions with the lunar surface, 2021, Geochemistry

The scientist frequently collaborates with other researchers. Their regular coauthors include M. K. Barker, Sander Goossens, Xiaoli Sun, Gael Cascioli, and David E. Smith.

Erwan Mazarico publishes extensively in journals and archives such as The Planetary Science Journal, arXiv (Cornell University), Zenodo (CERN European Organization for Nuclear Research), Space Science Reviews, and Science Advances.

Best Publications

  • Gravity field of the Moon from the Gravity Recovery and Interior Laboratory (GRAIL) mission.

    Maria T. Zuber;David E. Smith;Michael M. Watkins;Sami W. Asmar

  • The Lunar Orbiter Laser Altimeter Investigation on the Lunar Reconnaissance Orbiter Mission

    David E. Smith;Maria T. Zuber;Glenn B. Jackson;John F. Cavanaugh

  • Initial observations from the Lunar Orbiter Laser Altimeter (LOLA)

    David Edmund Smith;David Edmund Smith;Maria Zuber;Gregory A. Neumann;Frank G. Lemoine

  • A New Lunar Digital Elevation Model from the Lunar Orbiter Laser Altimeter and SELENE Terrain Camera

    M.K. Barker;E. Mazarico;G.A. Neumann;M.T. Zuber

  • Hydrogen mapping of the lunar south pole using the LRO neutron detector experiment LEND.

    I. G. Mitrofanov;A. B. Sanin;W. V. Boynton;G. Chin

  • Illumination conditions of the lunar polar regions using LOLA topography

    E. Mazarico;E. Mazarico;G.A. Neumann;D.E. Smith;D.E. Smith;M.T. Zuber

  • Gravity Field and Internal Structure of Mercury from MESSENGER

    David E. Smith;Maria T. Zuber;Roger J. Phillips;Sean C. Solomon

  • Global Distribution of Large Lunar Craters: Implications for Resurfacing and Impactor Populations

    James W. Iii. Head;Caleb I. Fassett;Seth J. Kadish;David E. Smith;David E. Smith

  • The curious case of Mercury's internal structure

    Steven A. Hauck;Jean-Luc Margot;Sean C. Solomon;Sean C. Solomon;Roger J. Phillips

  • Lunar impact basins revealed by Gravity Recovery and Interior Laboratory measurements

    Gregory A. Neumann;Maria Zuber;Mark A. Wieczorek;James W. Head

  • Lunar interior properties from the GRAIL mission

    James G. Williams;Alexander S. Konopliv;Dale H. Boggs;Ryan S. Park

  • Shape of (101955) Bennu indicative of a rubble pile with internal stiffness.

    O Barnouin;M Daly;E Palmer

  • GRGM900C: A degree 900 lunar gravity model from GRAIL primary and extended mission data

    Frank G. Lemoine;Sander Goossens;Sander Goossens;Terence J. Sabaka;Joseph B. Nicholas

  • Global surface slopes and roughness of the Moon from the Lunar Orbiter Laser Altimeter

    M. A. Rosenburg;O. Aharonson;J. W. Head;M. A. Kreslavsky

  • Seasonal and static Gravity Field of Mars from MGS, Mars Odyssey and MRO Radio Science

    Antonio Genova;Antonio Genova;Sander Goossens;Sander Goossens;Frank G. Lemoine;Erwan Mazarico

  • Evidence for surface water ice in the lunar polar regions using reflectance measurements from the Lunar Orbiter Laser Altimeter and temperature measurements from the Diviner Lunar Radiometer Experiment.

    Elizabeth A. Fisher;Elizabeth A. Fisher;Paul G. Lucey;Myriam Lemelin;Benjamin T. Greenhagen

  • Ancient Igneous Intrusions and Early Expansion of the Moon Revealed by GRAIL Gravity Gradiometry

    Jeffrey C. Andrews-Hanna;Sami W. Asmar;James W. Head;Walter S. Kiefer

  • Topography of the Northern Hemisphere of Mercury from MESSENGER Laser Altimetry

    Maria T. Zuber;David E. Smith;Roger J. Phillips;Sean C. Solomon

  • High‒degree gravity models from GRAIL primary mission data

    Frank G. Lemoine;Sander J. Goossens;Sander J. Goossens;Terence J. Sabaka;Joseph B. Nicholas

  • Lunar impact basins: Stratigraphy, sequence and ages from superposed impact crater populations measured from Lunar Orbiter Laser Altimeter (LOLA) data

    C. I. Fassett;C. I. Fassett;J. W. Head;S. J. Kadish;E. Mazarico

  • Constraints on the volatile distribution within Shackleton crater at the lunar south pole

    Maria T. Zuber;James W. Head;David E. Smith;Gregory A. Neumann

  • Bright and Dark Polar Deposits on Mercury: Evidence for Surface Volatiles

    Gregory A. Neumann;John F. Cavanaugh;Xiaoli Sun;Erwan M. Mazarico

Frequent Co-Authors

Gregory A. Neumann
Gregory A. Neumann Goddard Space Flight Center
Sander Goossens
Sander Goossens Goddard Space Flight Center
Sean C. Solomon
Sean C. Solomon Lamont-Doherty Earth Observatory
Frank G. Lemoine
Frank G. Lemoine Goddard Space Flight Center
James W. Head
James W. Head Brown University
Roger J. Phillips
Roger J. Phillips Washington University in St. Louis
Olivier S. Barnouin
Olivier S. Barnouin Johns Hopkins University Applied Physics Laboratory
David D. Rowlands
David D. Rowlands Goddard Space Flight Center
Steven A. Hauck
Steven A. Hauck Case Western Reserve University

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