I. J. Rae
- ORCiD
- https://orcid.org/0000-0002-2637-4786
- OpenAlex ID
- https://openalex.org/A5000082468 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Magnetic field
- Nuclear physics
- Plasma
- Geology
- Geophysics
- Magnetosphere
- Astronomy
- Solar wind
- Geography
- Computational physics
- Engineering
- Mathematics
- Meteorology
- Thermodynamics
- Earth's magnetic field
- Optics
- Astrophysics
- Computer science
- Substorm
- Van Allen radiation belt
- Ionosphere
- Atmospheric sciences
- Aerospace engineering
Authored Works
sorted by decreasing year, and then by display-name
- What Generates the Most Intense Chorus Waves in the Heart of the Outer Radiation Belt?
- The Evolution of Storm-Time Electron Pitch Angle Distributions in the Heart of the Outer Radiation Belt
- Revisiting Kennel-Petschek in the 21st Century: An Integrated Model of the Self-Consistent Capping of Electron Flux and the Control of Non-Linear Energetic Electron Precipitation into the Atmosphere
- Quantifying ULF Wave Radial Diffusion - A New Model for ULF Diffusion Coefficients based on Solar and Magnetospheric Drivers of ULF Waves
- On the need for an International Geospace Systems Program (IGSP)
- Differentiating Between Simultaneous Loss Drivers in Earth's Outer Radiation Belt Using Phase Space Density Observations
- Characterizing the impacts of the natural limit to electron radiation in the terrestrial Van Allen belts
- Understanding the energy sources for substorm onset
- ULF Wave Power During Geomagnetic Storms and Implications for Radial Diffusion Processes
- The Relative Variation of Near-Relativistic Electron Loss and Acceleration in the Outer Radiation Belt
- Quantitatively comparing the temporal and spatial variations of the aurora, waves and magnetic deflections associated with substorms
- Probing the magnetospheric substorm onset mechanism using pitch angle resolved GOES proton flux data
- Probing Current Sheet Instabilities from Flare Ribbon Dynamics
- Evaluating Auroral Forecasts Against Satellite Observations
- Direct evidence of magnetic reconnection onset via the tearing instability
Linked Co-Authors
- A. P. Walsh
- A. W. Breneman
- A. W. Smith
- Adam Kellerman
- B. H. Mauk
- B. Lavraud
- C. Forsyth
- Chi Wang
- Clare E. J. Watt
- D. N. Baker
- D. P. Hartley
- Daniel Verscharen
- H. U. Frey
- Harlan E. Spence
- I. R. Mann
- J. R. Wygant
- J. W. Gjerloev
- Jasmine Sandhu
- Junga Hwang
- K. R. Murphy
- L. G. Ozeke
- L. Kepko
- L. Olifer
- M. P. Freeman
- Maria-Theresia Walach
- Mayur Bakrania
- Michaela Mooney
- Minna Palmroth
- Nigel P. Meredith
- Q. Ma
- Ryan J. French
- S. G. Claudepierre
- S. Tian
- Samuel D. Walton
- Sarah Matthews
- Stavros Dimitrakoudis
- Suman Chakraborty
- T. Elsden
- Μαρίνα Γεωργίου
Linked Collaborating Institutions
- Austrian Institute of Space Science Research
- Brazilian National Institute for Space Research
- British Antarctic Survey
- European Science and Astronomy Center
- Finnish Meteorological Institute
- JAXA Japan Aerospace Exploration Agency
- Johns Hopkins University, Applied Physics Laboratory
- Korea Advanced Institute of Science and Technology
- Lancaster University, UK
- Meteorological Office, UK
- NASA Goddard Space Flight Center, Maryland
- National Autonomous University of Mexico
- National and Kapodistrian University of Athens, Greece
- Northumbria University, UK
- Physical Research Laboratory, India
- RAS, Space Research Institute, Moscow
- University College London, Mullard Space Science Laboratory
- University College London, UK
- University of Alberta, Canada
- University of Calgary, Canada
- University of California, Berkeley
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Colorado, Boulder, Laboratory for Atmospheric and Space Physics
- University of Iowa
- University of Leicester, UK
- University of Minnesota, Twin Cities
- University of New Hampshire
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