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
|
|---|
| Astrophysics - Solar And Stellar Astrophysics [S]
| 21
|
| Astrophysics
| 15
|
| Sun: Magnetic Fields
| 12
|
| Magnetohydrodynamics [S]
| 11
|
| Solar Cycle
| 10
|
| Sun: Interior [S]
| 9
|
| Turbulence
| 9
|
| Sun: Astrophysics
| 7
|
| Sun: Magnetic Field
| 6
|
| Sun: Activity
| 6
|
| Solar Activity
| 5
|
| Sun: Solar Physics
| 5
|
| Sun: Photosphere [S]
| 5
|
| Sun: Solar Magnetic Field
| 4
|
| Sunspots [S]
| 4
|
| Sun: Sunspots
| 4
|
| Physics
| 4
|
| The Sun [S]
| 4
|
| Magnetic Fields
| 3
|
| Sun: Dynamo
| 3
|
| Sun: Drag Force
| 3
|
| Solar Dynamo
| 3
|
| Convection
| 3
|
| Sun: Flux Tube
| 3
|
| Sun: Astrophysics - Solar And Stellar Astrophysics
| 2
|
| Sun: Coronal Loops
| 2
|
| Solar Magnetic Field
| 2
|
| Diffusion
| 2
|
| Physics - Space Physics [H]
| 2
|
| Sun: Decay Rate
| 2
|
| Photosphere [S]
| 2
|
| Space Climate
| 2
|
| Astrophysics - Earth And Planetary Astrophysics
| 2
|
| Sun: Solar Cycles
| 2
|
| Sun: Solar Cycle
| 2
|
| Sun: Solar Rotation
| 2
|
| Surface Flux Transport Modeling
| 2
|
| Sun: Active Region
| 2
|
| Sunspot Number
| 2
|
| Sun: Tachocline
| 2
|
| Sun: Rotation [S]
| 2
|
| Astrophysics - Instrumentation And Methods For Astrophysics
| 2
|
| Rogue Sunspots
| 2
|
| Sun: Cluster Analysis
| 2
|
| Sun: Magnetometers
| 1
|
| Sun: Magnetism
| 1
|
| Sun: Magnetic Flux
| 1
|
| Sun: Lognormal Distribution
| 1
|
| Sun: Inverse Solution
| 1
|
| Sun: Integral Scale
| 1
|
| Sun: High Latitude
| 1
|
| Sun: High Flux
| 1
|
| Sun: Helioseismology [S]
| 1
|
| Sun: Full Thickness
| 1
|
| Sun: Flux Density
| 1
|
| Sun: Field Distribution
| 1
|
| Sun: Erosion Model
| 1
|
| Sun: Dynamo Theory
| 1
|
| Sun: Convective Zone
| 1
|
| Sun: Chromosphere [S]
| 1
|
| Sun: Atmospheric Motions
| 1
|
| Sun: Atmosphere [S]
| 1
|
| Sun: Asymmetry
| 1
|
| Sun: Astrophysics - Instrumentation And Methods For Astrophysics
| 1
|
| Sun: Astrophysics - Earth And Planetary Astrophysics
| 1
|
| Sun: Approximation
| 1
|
| Sun: Anisotropic Diffusivity
| 1
|
| Sun: Analytic Estimate
| 1
|
| Sun: Active Regions
| 1
|
| Stellar Systems
| 1
|
| Stellar System
| 1
|
| Stellar Cores
| 1
|
| Starspots
| 1
|
| Stars: Solar-type
| 1
|
| Stars: Late-type
| 1
|
| Stars: Activity
| 1
|
| Space Density
| 1
|
| Solar Poles
| 1
|
| Solar Physics [S]
| 1
|
| Solar Indices
| 1
|
| Solar Atmosphere
| 1
|
| Singular Spectrum Analysis
| 1
|
| Self Consistent Fields
| 1
|
| Rotation
| 1
|
| Relativity And Gravitation
| 1
|
| Prediction
| 1
|
| Polar Field
| 1
|
| Plasmas
| 1
|
| Planets And Satellites: General
| 1
|
| Physics-based Prediction
| 1
|
| Phase-space Integral
| 1
|
| Overshooting
| 1
|
| Observations Of Turbulence In The Solar Corona And Solar Wind
| 1
|
| Observations And Models Of Intermittency
| 1
|
| Numerical Simulations Of Turbulence
| 1
|
| Models Of Magnetohydrodynamic Turbulence
| 1
|
| Mixing Height
| 1
|
| Mhd: Sun: Interior: Sun: Magnetic Fields
| 1
|
| Methods: Numerical
| 1
|
| Magnetohydrodynamics And Plasmas
| 1
|
| Magnetic Flux-transport Models
| 1
|
| Magnetic Fileds
| 1
|
| Linear Multiregression
| 1
|
| Ism: Clouds
| 1
|
| Ism: Abundances
| 1
|
| Instrumentation: Polarimeters
| 1
|
| Instrumentation: Adaptive Optics
| 1
|
| Gravitational Collapse
| 1
|
| Gamma-ray Sources
| 1
|
| Gamma-ray Bursts
| 1
|
| Galactic Structure
| 1
|
| Free Convection
| 1
|
| Fractional Energy
| 1
|
| Flux Tubes
| 1
|
| Exponential Functions
| 1
|
| Energy Distribution
| 1
|
| Emissivity
| 1
|
| Elliptical Galaxy
| 1
|
| Elliptical Galaxies
| 1
|
| Electric And Magnetic Fields Solar Magnetism
| 1
|
| Earth
| 1
|
| Dynamo
| 1
|
| Dpr
| 1
|
| Density Distribution
| 1
|
| Cycle Prediction
| 1
|
| Corona [S]
| 1
|
| Convective Flow
| 1
|
| Computational Astrophysics
| 1
|
| Climate Change
| 1
|
| Circulation
| 1
|
| Chromosphere
| 1
|
| Cascading And Scaling
| 1
|
| Black Holes
| 1
|
| Atmospheric Turbulence
| 1
|
| 95.30.qd
| 1
|
| Turbulence In The Sun And Heliosphere
| 1
|
| Telescopes
| 1
|
| Sunspots: Distribution
| 1
|
| Sunspots: Clustering
| 1
|
| Sunspot Decay
| 1
|
| Sunspot Cycle
| 1
|
| Sun: Weak Effect
| 1
|
| Sun: Vertical Shear
| 1
|
| Sun: Vertical Diffusivity
| 1
|
| Sun: Turbulent Motion
| 1
|
| Sun: Turbulent Diffusivity
| 1
|
| Sun: Torque
| 1
|
| Sun: Toroidal Plasmas
| 1
|
| Sun: Time Dependence
| 1
|
| Sun: Sunspot Cycle
| 1
|
| Sun: Sunspot Area
| 1
|
| Sun: Sun: Helioseismology
| 1
|
| Sun: Sun: Granulation
| 1
|
| Sun: Sun: Faculae
| 1
|
| Sun: Statistical Study
| 1
|
| Sun: Space-time Functions
| 1
|
| Sun: Solar Wind [H]
| 1
|
| Sun: Solar Flux
| 1
|
| Sun: Solar Flares
| 1
|
| Sun: Solar Activity Effects
| 1
|
| Sun: Solar Activity
| 1
|
| Sun: Rotation Rate
| 1
|
| Sun: Rotation Curve
| 1
|
| Sun: Relative Stability
| 1
|
| Sun: Prandtl Number
| 1
|
| Sun: Poloidal Flux
| 1
|
| Sun: Plages
| 1
|
| Sun: Passive Transport
| 1
|
| Sun: Parallel Approximation
| 1
|
| Sun: Oscillation Amplitude
| 1
|
| Sun: Observational Fact
| 1
|
| Sun: Numerical Model
| 1
|
| Sun: Noise Source
| 1
|
| Sun: Multiplicative Noise
| 1
|
| Sun: Models
| 1
|
| Sun: Meridional Circulation
| 1
|
| Sun: Maximum Area
| 1
|
| Sun: Mathematical Models
| 1
|
| Amo
| 1
|
| Activity Cycle
| 1
|
| 98.70.rz
| 1
|
| 97.60.lf
| 1
|
| 96.60.hv
| 1
|
| 95.30.sf
| 1
|
| Uncertainties
| 1
|