The Earth’s outer radiation belt often suffers from drastic changes in the electron fluxes. Since the electrons can be a potential threat to satellites, efforts have long been made to model and predict electron flux variations. In this paper, we describe a prediction model for the outer belt electrons that we have recently developed at Chungbuk National University. The model is based on a one-dimensional radial diffusion equation with observationally determined specifications of a few major ingredients in the following way. First, the boundary condition of the outer edge of the outer belt is specified by empirical functions that we determine using the THEMIS satellite observations of energetic electrons near the boundary. Second, the ...
This paper focuses on the modeling of local acceleration and loss processes in the outer radiation b...
Characterising the location of the outer boundary of the outer radiation belt is a key aspect of imp...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...
We present the first simulation results for electrons in the outer radiation belt near geosynchronou...
Because radiation belt electrons can pose a potential threat to the safety of satellites orbiting in...
In the Earth's radiation belts the flux of relativistic electrons is highly variable, sometimes chan...
A computer model has been built to simulate the dynamic evolution of relativistic electrons in the o...
A data-driven physical model of the energetic electrons in the Earth's radiation belts, called the R...
We report the multi-satellite (LANL, GOES-10 and Cluster) observation data of electron flux evolutio...
Abstract Characterizing the location of the outer boundary of the outer radiation belt is a key aspe...
We present results from our three-dimensional (3-D) simulations using the Salammbô electron radiatio...
Modern society relies substantially on satellite technology as it is involved in vital services like...
[1] On the basis of the correlation between the solar wind and radiation belt electron fluxes, we de...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
[1] Using recently published electron phase space densities (PSD) as a function of L * (L* is approx...
This paper focuses on the modeling of local acceleration and loss processes in the outer radiation b...
Characterising the location of the outer boundary of the outer radiation belt is a key aspect of imp...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...
We present the first simulation results for electrons in the outer radiation belt near geosynchronou...
Because radiation belt electrons can pose a potential threat to the safety of satellites orbiting in...
In the Earth's radiation belts the flux of relativistic electrons is highly variable, sometimes chan...
A computer model has been built to simulate the dynamic evolution of relativistic electrons in the o...
A data-driven physical model of the energetic electrons in the Earth's radiation belts, called the R...
We report the multi-satellite (LANL, GOES-10 and Cluster) observation data of electron flux evolutio...
Abstract Characterizing the location of the outer boundary of the outer radiation belt is a key aspe...
We present results from our three-dimensional (3-D) simulations using the Salammbô electron radiatio...
Modern society relies substantially on satellite technology as it is involved in vital services like...
[1] On the basis of the correlation between the solar wind and radiation belt electron fluxes, we de...
We have quantitatively investigated the radiation belt's dynamic variations of 1.5-6.0 MeV elec...
[1] Using recently published electron phase space densities (PSD) as a function of L * (L* is approx...
This paper focuses on the modeling of local acceleration and loss processes in the outer radiation b...
Characterising the location of the outer boundary of the outer radiation belt is a key aspect of imp...
The outer electron radiation belt is highly dynamic in space and time. Understanding the mechanisms ...