G. A. DiBraccio
- ORCiD
- https://orcid.org/0000-0002-2778-4998
- OpenAlex ID
- https://openalex.org/A5074927017 (API record)
Associated Concepts [?]
- Physics
- Biology
- Astronomy
- Quantum mechanics
- Astrobiology
- Geology
- Magnetic field
- Nuclear physics
- Plasma
- Geophysics
- Mars Exploration Program
- Solar wind
- Magnetosphere
- Martian
- Geography
- Engineering
- Computer science
- Environmental science
- Meteorology
- Astrophysics
- Chemistry
- Thermodynamics
- Organic chemistry
- Atmosphere of Mars
- Atmospheric sciences
Authored Works
sorted by decreasing year, and then by display-name
- The Search for Magnetotail Twisting at Mercury: Comparing MESSENGER Observations with the Terrestrial Case
- Plasma Seasons at Triton: Using Ideal MHD Simulations of Neptune to Assess Triton's Local Plasma Environment
- On the Relationship Between Discrete Aurora and Magnetic Reconnection at Mars from MAVEN Observations
- MAVEN Observations of Shocklets in the Upstream Martian Foreshock Region
- Investigating the Occurrence of Kelvin-Helmholtz Instabilities at Jupiter's Dawn Magnetopause
- Identifying Kelvin-Helmholtz Vortices in MAVEN Observations with a Machine Learning and Statistical Analysis Framework
- Global ambipolar potentials and electric fields at Mars inferred from MAVEN observations
- Comparing solar wind data collected by MESSENGER spacecraft to simulation data by AWSoM model
- Assessing the Relationship Between Extreme Space Weather, Magnetospheric Disturbances, and Proton Aurora Activity at Mars
- A Global Investigation of IMF-Crustal Field Interactions at Mars Using MAVEN Data
- Vlasov Informed Super Resolution (VISR): A Deep Learning Approach for De-Aliasing Particle Data
- The Role of IMF Clock Angle on Dayside Magnetic Reconnection at Mars
- Properties of Ion-Inertial Scale Plasmoids in the Jovian Magnetotail Detected by the Juno Spacecraft
- On the Growth and Development of Non-linear Kelvin-Helmholtz Instability at Mars: MAVEN Observations
- North-South IMF Sensitivity of the Mars-Solar Wind Interaction Is it important?
- Mars Global Magnetic Field Response To Localized Crustal Fields and Interplanetary Magnetic Field Direction
- MESSENGER Observations of the Interplanetary Magnetic Field's Influence on Magnetotail Twisting at Mercury
- MAVEN observations of low frequency steepened magnetosonic waves and associated heating of the Martian nightside ionosphere
- MAVEN observations of factors influencing the twisted magnetotail configuration at Mars
- Know Before You Go: Space Weather at Mars
- Juno Observations of the Magnetosphere of Ganymede
- Ionospheric Plasma Transported into the Martian Magnetosheath
- Identifying the Occurrence of Magnetic Reconnection at Jupiters Dawn Magnetopause
- Global Hybrid-VPIC Modeling of the Solar Wind Interaction with Mercury's Dynamic Magnetosphere: Reconnection and Foreshock
- Flapping in the Martian Magnetotail observed by MAVEN
- Evaluating the Influence of the Martian Magnetic Field Environment on Proton Aurora Activity
- Empirically determined auroral electron events at Mars - MAVEN observations
- Comparing Solar Wind Data Collected by MESSENGER Spacecraft to Simulation Data by AWSoM Model
Linked Co-Authors
- A. C. G. Hughes
- Abigail Azari
- B. H. Mauk
- B. M. Jakosky
- Blake Wetherton
- C. C. Chaston
- C. M. Fowler
- Christina O. Lee
- Christopher Bard
- Chuanfei Dong
- David Brain
- David Mitchell
- E. Thiemann
- F. Allegrini
- F. Bagenal
- F. Eparvier
- Facundo Sapienza
- G. B. Hospodarsky
- G. Clark
- G. Le
- Gangkai Poh
- J. A. Slavin
- J. Dorelli
- J. E. P. Connerney
- J. G. Luhmann
- J. Gruesbeck
- J. Montgomery
- J. S. Halekas
- J. W. Bonnell
- Jared Espley
- Justin Deighan
- K. Moore
- K. Nykyri
- L. Andersson
- Michael Chaffin
- Nicholas M. Schneider
- Norberto Romanelli
- Phillip C. Chamberlin
- R. M. Dewey
- R. W. Ebert
- R. Wilson
- Robert J. Lillis
- S. A. Fuselier
- S. A. Thaller
- S. Curry
- S. J. Bolton
- S. J. Schwartz
- S. Ruhunusiri
- Sean Howard
- Shaosui Xu
- Sonal Jain
- Tristan Weber
- W. S. Kurth
- W. Sun
- Xianzhe Jia
- Xuanye Ma
- Y. Ma
- Yash Sarkango
- Yuki Harada
- Zachariah Milby
Linked Collaborating Institutions
- Bard College, New York
- California Institute of Technology
- Cornell University, New York
- George Mason University, Virginia
- Howard University, Washington DC
- Imperial College, London
- Johns Hopkins University, Applied Physics Laboratory
- Kyoto University, Japan
- Los Alamos National Laboratory, New Mexico
- Massachusetts Institute of Technology
- NASA Goddard Space Flight Center, Maryland
- Princeton University, New Jersey
- Southwest Research Institute, Texas
- Universite de Toulouse Paul Sabatier, France
- University of California, Berkeley
- University of California, Berkeley, Space Sciences Laboratory
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Colorado, Boulder, Laboratory for Atmospheric and Space Physics
- University of Dayton, Ohio
- University of Iowa
- University of Iowa, Department of Physics and Astronomy
- University of Maryland, College Park
- University of Michigan
- University of Michigan, Department of Atmospheric Oceanic and Space Sciences
- University of Minnesota, Twin Cities
- University of Wisconsin, Madison
- West Virginia University
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