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Modeling the high-latitude MIT system with the IPIM model

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The Earth's Magnetosphere-Ionosphere-Thermosphere (MIT) system is stronglycontrolled by the laws of electrodynamics, which include significant contributions from all threecomponents.Today, we face a growing need for a better representation of this MIT system, at all latitudes due tothe growing use of GNSS satellites for positioning, which face accuracy and forecasting challengesthat are not accessible with current data coverage and processing tools. The IRAP Plasmasphere-Ionosphere Model (IPIM) is one of the only physical models developpedin Europe which solves plasma transport equation along magnetic field lines and provides acomplete 3D coverage of Earth's ionosphere and plasmasphere in latitudes, longitudes and altitudes.The model is suited to study the high latitude ionosphere, but some adjustement has to be done onthe inputs in order to simulate geomagnetic disturbances. Thus, we will present the model and some interesting results at high latitudes for geomagnetic events.
Title: Modeling the high-latitude MIT system with the IPIM model
Description:
The Earth's Magnetosphere-Ionosphere-Thermosphere (MIT) system is stronglycontrolled by the laws of electrodynamics, which include significant contributions from all threecomponents.
Today, we face a growing need for a better representation of this MIT system, at all latitudes due tothe growing use of GNSS satellites for positioning, which face accuracy and forecasting challengesthat are not accessible with current data coverage and processing tools.
 The IRAP Plasmasphere-Ionosphere Model (IPIM) is one of the only physical models developpedin Europe which solves plasma transport equation along magnetic field lines and provides acomplete 3D coverage of Earth's ionosphere and plasmasphere in latitudes, longitudes and altitudes.
The model is suited to study the high latitude ionosphere, but some adjustement has to be done onthe inputs in order to simulate geomagnetic disturbances.
 Thus, we will present the model and some interesting results at high latitudes for geomagnetic events.

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