Dedong Wang
- ORCiD
- https://orcid.org/0000-0002-4213-4037
- OpenAlex ID
- https://openalex.org/A5037547489 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Nuclear physics
- Plasma
- Magnetic field
- Geology
- Magnetosphere
- Engineering
- Chemistry
- Biology
- Computational physics
- Electron
- Computer science
- Geophysics
- Van Allen radiation belt
- Organic chemistry
- Medicine
- Sociology
- Geography
- Mathematics
- Astronomy
- Van Allen Probes
- Optics
- Thermodynamics
- Atomic physics
Authored Works
sorted by decreasing year, and then by display-name
- Wave-dependent ring current electron loss and magnetospheric precipitation during a geospace storm
- The controlling effect of the cold plasma density over theacceleration and loss of ultra-relativistic electrons
- The Distribution and the Effect of Chorus Waves in the Earth's and the Jupiter's Radiation Belts
- Simulating Long-Term Dynamics of Radiation Belt Electrons Using DREAM3D Model
- Modeling of Saturn's radiation environment using the VERB code
- Effect of Plasma Density on Ring Current Ion Loss Mechanisms
- Characterizing auroral precipitation and ionospheric conductance with the Multiscale Atmosphere-Geospace Environment model
- A Missing Duskside Loss Process in the Electron Ring Current
- Three-dimensional Versatile Electron Radiation Belt Code (VERB-3D) Simulations for the Van Allen Probe Era
- Passing the Alfven Layer by Means of Chorus Acceleration
- Model Validation and its Crucial Roles in Closing the Gap Between Space Weather Research, Operations, and End-User Needs: Successes and Setbacks
- Local radiation belt electron acceleration during periods of low plasma density
- Exploring Ring Current Electron Precipitation
- Controlling Effect of the Cold Plasma Density on Acceleration and Loss of Electrons at Ultra-Relativistic Energies.
- Analytical Chorus Wave Model Derived from Van Allen Probe and Arase Observations
Linked Co-Authors
- A. Kumamoto
- A. Matsuoka
- A. Saikin
- Adam Michael
- Alexander Drozdov
- Artem Smirnov
- C. Ferradas
- Dong Lin
- F. Toffoletto
- F. Tsuchiya
- G. Cunningham
- G. D. Reeves
- Hayley Allison
- I. Shinohara
- Irina Zhelavskaya
- J. D. Menietti
- J. G. Lyon
- Kareem Sorathia
- Kevin Pham
- M. G. Henderson
- M. J. Wiltberger
- M. M. Cowee
- M. M. Oppenheim
- M.‐C. Fok
- Maria Usanova
- Natalia Ganushkina
- Nikita Aseev
- Oleksiy Agapitov
- P. Kollmann
- S. A. Glauert
- Sang‐Yun Lee
- Shanshan Bao
- Shoya Matsuda
- T. P. O’Brien
- V. G. Merkin
- V. K. Jordanova
- Weichao Tu
- Wenbin Wang
- Xueling Shi
- Y. Y. Shprits
- Yihua Zheng
- Yixin Hao
- Yoshiya Kasahara
- Yoshizumi Miyoshi
Linked Collaborating Institutions
- Boston University, Massachusetts
- British Antarctic Survey
- Dartmouth College, New Hampshire
- Helmholtz Center for Geosciences, Potsdam
- JAXA, Institute of Space and Astronautical Science
- Johns Hopkins University, Applied Physics Laboratory
- Kanazawa University, Japan
- Los Alamos National Laboratory, New Mexico
- Lulea University of Technology, Sweden
- NASA Goddard Space Flight Center, Maryland
- NASA Marshall Space Flight Center
- Nagoya University, Japan
- National Center for Atmospheric Research, Colorado
- National Oceanic and Atmospheric Administration, Boulder
- Rice University, Texas
- Tohoku University, Japan
- University of Alberta, Canada
- University of California, Berkeley, Space Sciences Laboratory
- University of California, Los Angeles
- University of Iowa
- University of Michigan
- University of New Hampshire
- University of Potsdam, Germany
- Virginia Polytechnic Institute and State University
- West Virginia University
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