M. C. De Sanctis
- ORCiD
- https://orcid.org/0000-0002-3463-4437
- OpenAlex ID
- https://openalex.org/A5067952080 (API record)
Associated Concepts [?]
- Physics
- Biology
- Astronomy
- Astrobiology
- Geology
- Astrophysics
- Quantum mechanics
- Geography
- Asteroid
- Chemistry
- Paleontology
- Optics
- Engineering
- Geochemistry
- Materials science
- Impact crater
- Computer science
- Solar System
- History
- Remote sensing
- Planet
- Mineralogy
- Organic chemistry
Authored Works
sorted by decreasing year, and then by display-name
- The Martian Subsurface Investigation: Ma_MISS on ExoMars
- Exploration of the Permanently Shadowed Regions of the Southern Polar Terrains of Ceres using NASA/Dawn data
- Temporal evolution of the permanent shadowed regions at Mercury poles: applications for spectral detection of ice by SIMBIOSYS-VIHI on BepiColombo mission
- Dawn's second extended mission at Ceres: The final harvest
- Constraining the Carbon Content of Dwarf Planet Ceres
- Organic matter on Ceres: spectral analysis of the organic-rich area
- On the Origin of Organic Material on Ceres.
- Investigations of Ceres's Craters with Straightened Rim
- Insight into the nature and formation of the organic matter observed on Ceres
- Divergent Geophysical Evolution of Vesta and Ceres
- Ceres' Global Cryosphere
- Ammonium on Ceres
- The nature of Ceres' bluish material.
- The Interior Structure of Ceres as Revealed by Surface Topography and Gravity
- Spectrophotometric Correction of VIR-Dawn Observations of Vesta
- Pitted Terrain on Dwarf Planet Ceres: Morphological Evidence for Shallow Volatiles at Low and Mid Latitudes
- Distribution of the Ammoniated Species on the Surface of Ceres
- Vesta and Ceres as Seen by Dawn
- VIRTIS/Rosetta Observes Comet 67P/Churyumov-Gerasimenko: Nucleus and Coma Derived Composition and Physical Properties.
- The collisional history of dwarf planet Ceres revealed by Dawn
- The Geology of Ceres: an Overview
- Spectral Diversity of Ceres' Surface as Measured by VIR
- Regional and Local Temperature Maps of Dwarf Planet Ceres from Dawn/VIR
- Preliminary Geological Map of the Ac-H-9 Occator Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-8 Nawish Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-7 Kerwan Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-6 Haulani Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-5 Fejokoo Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-4 Ezinu Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-3 Dantu Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-2 Coniraya Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-14 Yalode Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-13 Urvara Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-12 Toharu Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Preliminary Geological Map of the Ac-H-11 Sintana Quadrangle of Ceres: An Integrated Mapping Study Using Dawn Spacecraft Data
- Interior Evolution of Ceres and Vesta Revealed by Dawn
- Homogeneous spectral units on Ceres as inferred from Dawn/VIR
- Comparative tectonic features on Ceres and other planetary bodies
- Ceres Evolution: From Thermodynamic Modeling and Now Dawn Observation
- Ammonia Bearing Species on Ceres: Implication on Origin and Evolution
- Vesta's Pinaria Region- A window on Vesta's Ancient Crust
- VIRTIS-Rosetta Observations of 67P/Churyumov-Gerasimenko Nucleus and Coma During the Mission Pre-Landing Phase.
- Thermal Properties of the Surface of 67P/Chryumov-Gerasimenko: Initial Results
- Rosetta/VIRTIS-M spectral data: Comet 67P/CG compared to other primitive small bodies.
- Photometric Properties of Comet 67P/CG as Seen by VIRTIS-M Onboard Rosetta: Light Curves and Disk-integrated Phase Curves.
- Modeling the Spectrophotometric Properties of 67/P Churyumov-Gerasimenko as Seen by VIRTIS-M Onboard Rosetta
- Looking for minor spectral features on 67P
- Composition of Rheasilvia Basin on Asteroid Vesta.
- Comet 67P/CG compositional maps at regional scale in the VIS-IR from Rosetta/VIRTIS-M (Invited)
- Comet 67P/C-G: Surface Temperatures as Derived by Rosetta/VIRTIS in the Mapping Phase
- Two Small Planets: Vesta Revealed and Ceres Anticipated
- Topographic Analyses of the Vestalia Terra plateau, Vesta (Invited)
- The Atlas of Vesta Spectral Parameters derived from the mapping spectrometer VIR onboard NASA/Dawn
- Gravity constraints on origin and evolution of Vesta
- VIR looking at Vesta: the north hemisphere
- The Geology of the Marcia Quadrangle of Asteroid Vesta: An Integrated Mapping Study Using Dawn Spacecraft Data
- Space Weathering on Airless Bodies
- Petrology of Asteroid Vesta: Synergy of Dawn Remote-Sensing and HED Meteorites
- OH and H2O on Vesta and on the Moon: A comparative analysis
- Internal structure and mineralogy of differentiated asteroids assuming chondritic bulk composition: The case of Vesta
- Grain size analysis of the Bright Materials on 4 Vesta
- Global Surface Thermal Inertia Derived from Dawn VIR Observations
- Exploring New Worlds: Dawn at Vesta
- Dawn at Vesta: surface mineralogy after the mapping phases
- Dawn Completes its Mapping of Vesta: An Introduction to Dawn's Findings
- Dark Material on Vesta from Infall of Carbonaceous Volatile-Rich Materials
- Vesta surface mineralogy: Global and regional properties
- Vesta Phase Reddening from Dawn Observations
- VIR: first hyperspectral images of 4 Vesta's surface
- The surface composition and photometric properties of 21 Lutetia as observed by VIRTIS onboard ROSETTA
- The Thermal Inertia of Vesta's Surface
- The South Polar Structure on Vesta from Dawn: Using Geologic, Topographic and Compositional Mapping and Planetary Analogs to Test Origin Models
- The Application of a Vestoid-Derived Photometric Model to the Surface of (4) Vesta
- Photometric properties of Vesta from Dawn
- Mapping Vesta: A Geological Overview
- Mapping Vesta South Polar Quadrangle V-15SP: A Complex Geological Structure Dominates Vesta
- Mapping Vesta Mid-Latitude Quadrangle V-12EW: Mapping the Edge of the South Polar Structure
- Macro vs. Micro: relating the Spectral Properties of Vesta and the HED Meteorite
- Laboratory spectroscopy of HED meteorites
- Influence of dust on cometary radiance spectra infered from various models of Comet 67P/Churyumov-Gerasimenko
- Evidence of Space Weathering Processes Across the Surface of Vesta
- Compositional maps and VIS-IR spectral indicators of Vesta's surface retrieved from VIR hyperspectral data
- Classification and analysis of the Rudaki's Area
- A preliminary global geologic map of Vesta based on Dawn Survey orbit data
- 4 Vesta in Color: Lithologic heterogeneity from Dawn Framing Camera Images
- 4 Vesta in Color: High Resolution Mapping from Dawn Framing Camera Images
- Spectra of volcanic rocks glasses as analogues of Mercury surface spectra
- VIS-NIR lightcurve of 2867 Steins during the Rosetta fly-by
- The VIRTIS observations of 2867 Steins during the Rosetta fly-by
- The Martian Atmosphere as Observed by VIRTIS-M on Rosetta Spacecraft
- Vesta Cratering: is it a Record of Primordial Bombardment?
- VIR, the Visible-IR Mapping Spectrometer of Dawn
- Importance of the in situ Study of the Martian Subsurface, and Technical Challenges: DIBS-MA_MISS
Linked Co-Authors
- A. Longobardo
- A. Migliorini
- A. Raponi
- Alessandro Frigeri
- Alice Lucchetti
- Cristian Carli
- D. Turrini
- F. Capaccioni
- F. G. Carrozzo
- G. Filacchione
- G. Piccioni
- G. Rinaldi
- M. Ciarniello
- M. Ferrari
- M. Formisano
- R. Orosei
- S. Erard
- S. Fonte
- S. Giuppi
- Simone De Angelis
- V. Galluzzi
Linked Collaborating Institutions
- Aix-Marseille Universite, France
- Aix-Marseille Universite, Laboratoire d'Astrophysique
- Arizona State University
- Arizona State University, School of Earth and Space Exploration
- Brown University, Department of Geological Sciences
- Brown University, Rhode Island
- CAS, Purple Mountain Observatory
- California Institute of Technology
- California Institute of Technology, Division of Geological and Planetary Sciences
- California State University, Fullerton
- California State University, Los Angeles
- Free University of Berlin, Germany
- Georgia Institute of Technology
- German Aerospace Center, Berlin
- Helmholtz Institute for Planetary Research, Berlin
- Institute of Astrophysics of Andalusia
- Italian National Institute of Astrophysics
- Italian Space Agency
- Jet Propulsion Laboratory
- Johns Hopkins University, Applied Physics Laboratory
- Johns Hopkins University, Maryland
- Lamont-Doherty Earth Observatory
- Lunar and Planetary Institute, Houston
- MIT, Department of Earth and Planetary Science
- Massachusetts Institute of Technology
- Max-Planck-Institute for Solar System Research, Lindau
- NASA Goddard Space Flight Center, Maryland
- NASA Johnson Space Center
- National Central University, Taiwan
- Observatoire de Paris, France
- Observatoire de la Cote d'Azur, France
- Planetary Science Institute, Arizona
- Polish Academy of Sciences, Space Research Center
- Roma Tre University, Italy
- Russian Academy of Sciences, Moscow, Russia
- Sapienza University, Rome, Italy
- Smithsonian Institution
- Smithsonian Institution Air and Space Museum
- Southwest Research Institute, Boulder
- Southwest Research Institute, Texas
- Space Science Institute, Colorado
- Technical University of Braunschweig, Germany
- Technical University of Braunschweig, Institute for Geophysics and Space Physics
- U.S. Geological Survey, Flagstaff
- Universite Joseph Fourier Grenoble, France
- Universite de Nice Sophia Antipolis, France
- Universite de Toulouse Paul Sabatier, France
- University of Arizona
- University of Arizona, Department of Planetary Sciences
- University of California, Los Angeles
- University of California, Los Angeles, Institute of Geophysics and Planetary Physics
- University of Chicago, Department of Geophysical Sciences
- University of Colorado, Boulder
- University of Hawaii, Manoa
- University of Maryland, College Park
- University of Maryland, Department of Astronomy
- University of Michigan
- University of Munster, Institute for Planetology
- University of North Dakota
- University of North Dakota, Department of Space Studies
- University of Padua, Department of Geosciences
- University of Padua, Department of Physics and Astronomy
- University of Parma, Department of Physics and Earth Sciences
- University of Perugia, Department of Physics and Earth Sciences
- University of Tennessee
- University of Tennessee, Department of Earth and Planetary Sciences
- University of Washington, Department of Earth and Space Sciences
- Vatican Observatory
- Virginia Polytechnic Institute and State University
- Washington University in Saint Louis, Missouri
- Wilhelms University of Munster, Germany
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