The table below shows the most common keywords used by the author. The letters in brackets after some keywords denote if the keyword corresponds to Solar Physics (S) or Heliospheric Physics (H).
| Keyword
| Occurrences
|
|---|
| Solar Wind [H]
| 23
|
| Astrophysics - Solar And Stellar Astrophysics [S]
| 16
|
| Physics - Space Physics [H]
| 16
|
| Physics - Plasma Physics [H]
| 11
|
| Space Plasmas [H]
| 5
|
| Solar Coronal Waves [S]
| 5
|
| Electron Holes
| 4
|
| Solitary Waves
| 4
|
| Parker Solar Probe
| 3
|
| Solar And Stellar Astrophysics
| 3
|
| Sun: Corona [S]
| 3
|
| Electric Field
| 3
|
| Whistler Waves
| 3
|
| Plasmasphere
| 3
|
| Interplanetary Shocks [H]
| 2
|
| Subcorotation
| 2
|
| Inner Radiation Belt
| 2
|
| Current Sheets
| 2
|
| Inner Magnetosphere
| 2
|
| Plasma Physics
| 2
|
| Injection
| 2
|
| Saps
| 2
|
| Reconstruction
| 2
|
| Sun: Magnetic Fields
| 2
|
| Sun: Heliosphere [H]
| 2
|
| Magnetosheath
| 2
|
| Magnetic Reconnection
| 2
|
| Electron Acceleration
| 2
|
| Radiation Belt
| 2
|
| Solar Physics [S]
| 2
|
| Electric Drift
| 2
|
| Solar Electromagnetic Emission
| 2
|
| Shocks
| 2
|
| Shock Waves
| 2
|
| Space Physics
| 2
|
| Pitch Angle Scattering
| 1
|
| Physical Sciences
| 1
|
| Nonlinear Wave-particle Interactions
| 1
|
| Nonlinear Sciences - Pattern Formation And Solitons
| 1
|
| Non-thermal Radiation Sources
| 1
|
| Multispacecraft Observations
| 1
|
| Multi-spacecraft Analysis
| 1
|
| Magnetospheres
| 1
|
| Magnetosphere-ionosphere Coupling
| 1
|
| Magnetic Fields
| 1
|
| Isotropization
| 1
|
| Ionospheric Disturbance Dynamo
| 1
|
| Ionosphere
| 1
|
| Ion-acoustic Wave
| 1
|
| Interplanetary Turbulence [H]
| 1
|
| Interplanetary Magnetic Fields [H]
| 1
|
| Interplanetary Dust
| 1
|
| Injections
| 1
|
| Induced Scattering
| 1
|
| Important E-field Measurements
| 1
|
| High Energy Astrophysical Phenomena
| 1
|
| Gamma-ray Bursts
| 1
|
| Future Improvements
| 1
|
| Field-aligned Electrons
| 1
|
| Fermi Reflection
| 1
|
| Electrostatic Waves
| 1
|
| Electrostatic Turbulence
| 1
|
| Electrostatic Solitary Waves
| 1
|
| Electrostatic Field
| 1
|
| Electron-acoustic Waves
| 1
|
| Electron Phase Space Holes
| 1
|
| Active Solar Corona
| 1
|
| Electron Heating
| 1
|
| Electron Acoustic Waves
| 1
|
| Electric Fields Measurements
| 1
|
| Electric Fields
| 1
|
| Electric Drift Measurements
| 1
|
| Earth's Bow Shock
| 1
|
| E_field Detector Design
| 1
|
| E Field Measurements
| 1
|
| Duration
| 1
|
| Drift Paths
| 1
|
| Double Layers
| 1
|
| Double Layer
| 1
|
| Corotation
| 1
|
| Chorus Waves Model
| 1
|
| Chorus Spatial Scales
| 1
|
| Chorus Cannot Precipitate Electrons Observed In Pulsating Auroras
| 1
|
| Chorus And Hiss Connection
| 1
|
| Chorus And Hiss
| 1
|
| Wind
| 1
|
| Whistler Active Region Scales
| 1
|
| Waves
| 1
|
| Wave Steepening
| 1
|
| Wave Source Spatial Extent
| 1
|
| Wave Scattering
| 1
|
| Vlf Waves
| 1
|
| Vlf Wave Statistics
| 1
|
| Vlasov Simulation
| 1
|
| Venus
| 1
|
| Turbulence
| 1
|
| Time Domain Structures Cause Electron Precipitation In Pulsating Auroras
| 1
|
| Three-dimensional Structure Of Electron Holes
| 1
|
| Thermosphere
| 1
|
| Tangential Discontinuities
| 1
|
| Solitons
| 1
|
| Solitary Wave
| 1
|
| Solar Wind Interaction
| 1
|
| Solar Radio Emission
| 1
|
| Solar Coronal Radio Emission
| 1
|
| Slow Electron Holes
| 1
|
| Search-coil Magnetometer
| 1
|
| Rotational Discontinuities
| 1
|
| Reconnection
| 1
|
| Rayleigh-taylor Instability
| 1
|
| Radio Sources
| 1
|
| Radio Continuum Emission
| 1
|
| Pulsating Auroras
| 1
|
| Polarization Properties
| 1
|
| Polarization
| 1
|
| Plasmas
| 1
|
| Plasma Turbulence
| 1
|
| Plasma Transport
| 1
|
| Plasma Astrophysics
| 1
|
| Planetary Bow Shocks
| 1
|
| Astrophysics - Instrumentation And Methods For Astrophysics
| 1
|
| Astrophysics - High Energy Astrophysical Phenomena [S]
| 1
|
| Astrophysics - Earth And Planetary Astrophysics
| 1
|
| Astrophysical Processes
| 1
|
| Alfvén Waves
| 1
|
| Alfven Waves
| 1
|
| Adiabatic Invariants
| 1
|
| Electron Losses
| 1
|