Python package of the multi-spacecraft longitudinal configuration plotter Solar-MACH
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Updated
Jun 10, 2025 - Python
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Python package of the multi-spacecraft longitudinal configuration plotter Solar-MACH
Data loader (and downloader) for Solar Orbiter/EPD energetic charged particle sensors EPT, HET, and STEP. Supports level 2, 3, and low latency data provided by ESA's Solar Orbiter Archive.
Forecasting of the solar wind and geomagnetic storms with spacecraft at L1, L5 or trailing the Earth in its orbit
3D coronal mass ejection flux rope modeling
Animations and plots of spacecraft positions for Parker Solar Probe, Solar Orbiter, Bepi Colombo, and STEREO-A (2018-2025) with heliopy
Grad-Shafranov reconstruction for interplanetary magnetic flux ropes
Verifying the predictions of solar coronal mass ejections (CMEs) with multipoint in situ data, and deriving statistics of CME parameters for the 4 terrestrial planets and Parker Solar Probe.
Calculates from knowledge of the solar wind plasma and magnetic field the Dst index
Forward modeling of solar storm magnetic flux ropes for space weather prediction.
Velocity Dispersion Analysis (VDA) of Solar Energetic Particle events
Bow-tie analysis for the energy channels of a generic particle instrument
GEANT4 Virtual Machine for simulations of SOHO/Chandra EPHIN and Solar Orbiter HET
An ISTP standard layer for CDF files
Python tool for detecting geometric alignements between multiple spacecrafts and planets.
Forbush Decrease Analysis Tool
The following README details the ParkerSolarWind program, written by Kaycee Conder this Spring of 2025 at the University of Wyoming.
Classic time-elongation fitting for heliospheric imager data
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