G. Martínez
- ORCiD
- https://orcid.org/0000-0001-9990-8817
- OpenAlex ID
- https://openalex.org/A5000161585 (API record)
Associated Concepts [?]
- Physics
- Biology
- Geology
- Astronomy
- Astrobiology
- Geography
- Mars Exploration Program
- Environmental science
- Meteorology
- Atmospheric sciences
- Martian
- Chemistry
- Thermodynamics
- Organic chemistry
- Quantum mechanics
- Oceanography
- Impact crater
- Engineering
- Atmosphere of Mars
- Optics
- Remote sensing
Authored Works
sorted by decreasing year, and then by display-name
- Three-Moment Dust Microphysics for Mars.
- The Relationship Between the Nili Fossae Olivine-bearing Unit and Séítah in Jezero Crater, Mars
- Seasonal and Daily Evolution of Fast Pressure Fluctuations at Jezero
- Reproducing Stratospheric Superrotation in Titan's Atmosphere with the TitanWRF GCM
- Recent insights into dust lifting and sand motion at the surface of Mars.
- Observations of the climate near the surface of Jezero over a half Mars year
- Modeling the effect of a regional dust storm in Jezero crater using MarsWRF mesoscale and large eddy simulations.
- M2020/Perseverance Study of Atmospheric Tides and Waves at Jezero, Mars
- Lifting and Transport of Martian Dust by the Ingenuity Helicopter Rotor Downwash as Observed by High-Speed Imaging from the Perseverance Rove
- Joint Observation of Planetary Waves from the Curiosity and Perseverance Rovers
- Frost Detection Campaigns by the Mars Science Laboratory Mission: Results and Lessons for the Mars 2020 mission
- Elevation Dependent Meteorology in Gale Crater
- Dust, Sand, and Winds within an Active Martian Storm in Jezero Crater
- Angular Momentum Transfer Events in Titan's Stratosphere
- Aeolian Activity at Jezero Crater during the Mars 2020 Mission: A Multi-instrument Analysis
- Aeolian Activity Over Two Martian Years at the InSight Landing Site
- Acoustic Measurements of Saltation on Mars made by Perseverance
- The effect of surface dust availability on the timing of Martian dust storms.
- The Winds of Jezero Crater, Mars.
- Ten months of Perseverance on Mars
- Sources of Potential Tephra Deposits in the Jezero Crater Region on Mars from Ash Dispersal Modeling.
- Perseverance/Mars2020 measurements of the daily pressure cycle at Jezero
- Performance and First Measurements of the MEDA Wind Sensor of NASAs Mars 2020 Mission at Jezero Crater, Mars
- Overview of MEDA results aboard Perseverance over the first sols on Mars
- Mars 2020 MEDA ATS Measurements of Near Surface Atmospheric Temperatures at Jezero
- Latest results from ChemCam Passive Sky Spectroscopy at Gale Crater, Mars
- First Results of the Surface Energy Budget, Thermal Inertia and Albedo at Jezero Crater, Mars, as obtained from the Mars 2020 MEDA Instrument
- Exploring the Mechanisms Controlling Titan's Detached Haze Layer with a Coupled GCM/Microphysics Model
- Dust lifting detection and characterization at Jezero using MEDA radiance observations
- Convective vortices and dust devils on Jezero observed by Mars 2020
- Atmospheric Assessment in Support of Ingenuity Helicopter Flights
- Astrobiology Implications of Environmental Dynamics Observations in Jezero Crater, Mars
Linked Co-Authors
- A. A. Fraeman
- A. J. Brown
- A. R. Vasavada
- A. Sánchez‐Lavega
- Agustín Sánchez‐Lavega
- Alejandro Soto
- Asier Munguira
- B. Horgan
- B. P. Weiss
- Baptiste Chide
- Brian Jackson
- C. A. Nixon
- Carolina Martin-Rubio
- Christian Tate
- Christopher Lee
- Christy Swann
- Constantinos Charalambous
- David Mimoun
- Erin Flowers
- Franck Montmessin
- Frank Daerden
- G. Martı́nez
- J. A. Rodriguez-Manfredi
- J. Jiménez-Martín
- J. Michael Battalio
- J. R. Johnson
- Jorge Núñez
- Jorge Pla‐García
- Justin N. Maki
- K. H. Williford
- M. A. Mischna
- M. D. Smith
- M. E. Banks
- M. G. Trainer
- M. T. Lemmon
- Manuel de la Torre Juárez
- Mariah Baker
- Martin Cordiner
- María Paz Zorzano
- Michael Wolff
- Miguel Ramos
- N. J. Livesey
- N. Lanza
- P. Y. Meslin
- R. Hueso
- Ralph D. Lorenz
- Richard Cosentino
- Robert Sullivan
- Roger C. Wiens
- S. A. Fagents
- S. Diniega
- S. Zurita‐Zurita
- Sara Navarro
- Scott D. Guzewich
- Shea N. Thorne
- Tanguy Bertrand
- Tom Pike
- V. Apéstigue
- Á. Vicente‐Retortillo
Linked Collaborating Institutions
- Arizona State University
- Boise State University, Idaho
- California Institute of Technology
- California Institute of Technology, Division of Geological and Planetary Sciences
- Carnegie Institution of Washington
- Cornell University, New York
- Ecole Nationale Superieure de l'Aeronautique et de l'Espace de Toulouse, France
- Finnish Meteorological Institute
- German Aerospace Center, Berlin
- Imperial College, London
- Jet Propulsion Laboratory
- Johns Hopkins University, Applied Physics Laboratory
- Johns Hopkins University, Maryland
- Los Alamos National Laboratory, New Mexico
- Los Alamos National Laboratory, Space Sciences
- Lunar and Planetary Institute, Houston
- MIT, Department of Earth and Planetary Science
- Malin Space Science Systems, California
- Massachusetts Institute of Technology
- NASA Goddard Space Flight Center, Maryland
- NASA Stennis Space Center
- Planetary Science Institute, Arizona
- Polytechnic University of Madrid, Spain
- Princeton University, New Jersey
- Purdue University, Indiana
- RAS, Space Research Institute, Moscow
- Royal Observatory of Belgium
- Southwest Research Institute, Boulder
- Space Science Institute, Colorado
- Spanish Institute for Aerospace Technologies
- Technical University of Catalona, Spain
- Texas A&M University, College Station
- Universidad del Pais Vasco, Spain
- Universite de Nantes, Laboratoire de Planetologie et de Geodynamique
- Universite de Toulouse Paul Sabatier, France
- University of Alcala, Spain
- University of British Columbia, Canada
- University of California, Berkeley
- University of Colorado, Boulder
- University of Hawaii, Manoa
- University of Helsinki, Finland
- University of Maryland, College Park
- University of Michigan
- University of Padua, Italy
- University of Toronto, Canada
- Yale University, Connecticut
- York University, Ontario
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