Data-Constrained Solar Modeling with GX Simulator
Gelu M. Nita, Gregory D. Fleishman, Alexey A. Kuznetsov, Sergey A., Anfinogentov, Alexey G. Stupishin, Eduard P. Kontar, Samuel J. Schonfeld,, James A. Klimchuk, Dale E. Gary

TL;DR
The paper introduces GX Simulator, a versatile, open-source modeling framework that integrates 3D magnetic and plasma structures with multi-wavelength emission calculations to study solar active regions and flares.
Contribution
It presents a comprehensive, modular, and automated tool for creating and visualizing solar models, combining magnetic field extrapolations with plasma and emission simulations.
Findings
Successfully integrates magnetic, plasma, and emission models.
Automates model creation from observational data.
Enables detailed comparison with solar observations.
Abstract
To facilitate the study of solar active regions and flaring loops, we have created a modeling framework, the freely distributed GX Simulator IDL package, that combines 3D magnetic and plasma structures with thermal and non-thermal models of the chromosphere, transition region, and corona. The package has integrated tools to visualize the model data cubes, compute multi-wavelength emission maps from them, and quantitatively compare the resulting maps with observations. Its object-based modular architecture, which runs on Windows, Mac, and Unix/Linux platforms, offers capabilities that include the ability to either import 3D density and temperature distribution models, or to assign numerically defined coronal or chromospheric temperatures and densities, or their distributions to each individual voxel. The application integrates FORTRAN and C++ libraries for fast calculation of radio…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Geomagnetism and Paleomagnetism Studies
