Wave–particle interaction effects in the Van Allen belts [PDF]
Discovering such structures as the third radiation belt (or “storage ring”) has been a major observational achievement of the NASA Radiation Belt Storm Probes program (renamed the “Van Allen Probes” mission in November 2012).
Daniel N. Baker
doaj +3 more sources
Magnetospheric response to solar wind forcing: ultra-low-frequency wave–particle interaction perspective [PDF]
Solar wind forcing, e.g., interplanetary shock and/or solar wind dynamic pressure pulses impacting Earth's magnetosphere, manifests many fundamental important space physics phenomena, including producing electromagnetic waves, plasma heating, and ...
Q. Zong, Q. Zong, Q. Zong
doaj +2 more sources
Significance of Wave-Particle Interaction Analyzer for direct measurements of nonlinear wave-particle interactions [PDF]
In the upcoming JAXA/ERG satellite mission, Wave Particle Interaction Analyzer (WPIA) will be installed as an onboard software function. We study the statistical significance of the WPIA for measurement of the energy transfer process between energetic
Y. Katoh +10 more
doaj +2 more sources
Software-type Wave–Particle Interaction Analyzer on board the Arase satellite
We describe the principles of the Wave–Particle Interaction Analyzer (WPIA) and the implementation of the Software-type WPIA (S-WPIA) on the Arase satellite.
Yuto Katoh +16 more
doaj +2 more sources
Wave particle interactions are known to be an efficient yet unquantified driver of the variability of particle populations in Earth’s magnetosphere, and their quantification and understanding through modelling has been a subject of ceaseless and ...
Stelios Tourgaidis, Theodore Sarris
doaj +2 more sources
Data processing in Software-type Wave–Particle Interaction Analyzer onboard the Arase satellite
The software-type wave–particle interaction analyzer (S-WPIA) is an instrument package onboard the Arase satellite, which studies the magnetosphere. The S-WPIA represents a new method for directly observing wave–particle interactions onboard a spacecraft
Mitsuru Hikishima +13 more
doaj +2 more sources
Computational and theoretical study of the wave-particle interaction of protons and waves [PDF]
We study the wave-particle interaction and the evolution of electromagnetic waves propagating through a plasma composed of electrons and protons, using two approaches.
P. S. Moya +5 more
doaj +2 more sources
On the nature of particle energization via resonant wave-particle interaction in the inhomogeneous magnetospheric plasma [PDF]
When a quasi-monochromatic wave propagating in an inhomogeneous magnetoplasma has sufficiently large amplitude, there exist phase-trapped resonant particles whose energy increases or decreases depending on the "sign" of inhomogeneity.
D. R. Shklyar, D. R. Shklyar
doaj +2 more sources
Intense Whistler-mode Waves at Foreshock Transients: Characteristics and Regimes of Wave−Particle Resonant Interaction [PDF]
Thermalization and heating of plasma flows at shocks result in unstable charged-particle distributions that generate a wide range of electromagnetic waves. These waves, in turn, can further accelerate and scatter energetic particles. Thus, the properties
Xiao-Fei Shi +5 more
semanticscholar +1 more source
Shallow trimers of two identical fermions and one particle in resonant regimes
We consider two identical fermions interacting in the p-wave channel. Each fermion also interacts with another particle in the vicinity of an s-wave resonance.
Pascal Naidon, Ludovic Pricoupenko, Christiane Schmickler
doaj +1 more source

