V. Roytershteyn
- ORCiD
- https://orcid.org/0000-0003-1745-7587
- OpenAlex ID
- https://openalex.org/A5081271228 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Nuclear physics
- Plasma
- Magnetic field
- Thermodynamics
- Mechanics
- Classical mechanics
- Geography
- Magnetic reconnection
- Meteorology
- Electron
- Turbulence
- Computational physics
- Kinetic energy
- Engineering
- Chemistry
- Computer science
- Organic chemistry
- Mathematics
- Geology
- Solar wind
Authored Works
sorted by decreasing year, and then by display-name
- The effects of O+ on the global, meso and micro scales in earth's magnetotail dynamics-3D Global Hybrid simulation results
- Solar Cycle Effect on the Solar Wind-Local Interstellar Medium Interaction with Pickup Ions
- Radiation Belt Remediation with Artificial Injection of Plasma Waves
- Numerical Study of Kinetic-Scale Plasma Turbulence with Low Electron Beta
- Interplay of Turbulence and Proton-Microinstability Growth in Space Plasmas
- A new generation mechanism for highly oblique chorus waves enabled by cold electrons
- Towards Accurate Modeling of the Solar Wind-Local Interstellar Medium Interaction with Pickup Ions
- The role of O+ in dynamics of the earths magnetotail.
- The impact of cold electrons on whistler waves
- Study of 3D Electron-only Reconnection in a Low Electron Beta Plasma Environment
- Shape of the Electron Velocity Distribution Function in the Inner Heliosphere
- Second Harmonic Electromagnetic Emission in a 20keV Electron Beam-Plasma Laboratory Experiment
- Radiation Belt Remediation Using Artificially Generated Plasma Waves
- Kinetic Processes Leading to Generation of Waves in Instabilities in the VLISM
- Fully Kinetic Simulations of Radio Emission from a Propagating Electron Beam
- Enabling Optimizations for Global Magnetospheric Kinetic Simulations with Reduced Kinetic Spectral Models
- Electron heating by magnetization and its application to dipolarization fronts in Earths magnetotail Theory, Simulations, and Observations
- Comparative study of the magnetotail loading of ionospheric O+ using 3D Global Hybrid simulations.
- Cascade and Energy Balance in Plasma Turbulence: Scale Filtering and Structure Functions
Linked Co-Authors
- A. Runov
- Alexandros Chasapis
- B. L. Giles
- Bennett A. Maruca
- C. A. Cattell
- C. J. Pollock
- C. Mouikis
- C. T. Russell
- D. J. Gershman
- Federico Fraternale
- G. Cunningham
- G. D. Reeves
- Gian Luca Delzanno
- J. C. Holmes
- J. M. Broll
- K. J. Genestreti
- L. M. Kistler
- Leanne D. Duffy
- M. A. Shay
- M. Gedalin
- M. Hasan Barbhuiya
- M. M. Cowee
- M. Swisdak
- N. V. Pogorelov
- P. A. Cassak
- Patrick Kilian
- R. A. Qudsi
- R. B. Torbert
- R. Bandyopadhyay
- S. Dorfman
- Stanislav Boldyrev
- T. E. Moore
- T. N. Parashar
- Troy Carter
- W. H. Matthaeus
- Xiangrong Fu
- Y. A. Omelchenko
- Yan Yang
Linked Collaborating Institutions
- Ben Gurion University of the Negev, Israel
- Laboratoire de Physique et de Chimie de l'Environnement et de l'Espace, Orleans
- Los Alamos National Laboratory, New Mexico
- MIT, Lincoln Laboratory
- NASA Goddard Space Flight Center, Maryland
- Princeton University, New Jersey
- South University of Science and Technology, China
- Southwest Research Institute, Texas
- Space Science Institute, Colorado
- University of Alabama, Huntsville
- University of California, Berkeley
- University of California, Berkeley, Space Sciences Laboratory
- University of California, Los Angeles
- University of Colorado, Boulder, Laboratory for Atmospheric and Space Physics
- University of Delaware
- University of Maryland, College Park
- University of Minnesota, Twin Cities
- University of New Hampshire
- University of Wisconsin, Madison
- Victoria University of Wellington, New Zealand
- West Virginia University
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