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Main Authors: Louis, Corentin K., Hess, Sébastien L. G, Cecconi, Baptiste, Zarka, Philippe, Lamy, Laurent, Aicardi, Stéphane, Loh, Alan
Format: Recurso digital
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Published: Zenodo 2026
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Online Access:https://doi.org/10.5281/zenodo.18682880
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_version_ 1866902325852897280
author Louis, Corentin K.
Hess, Sébastien L. G
Cecconi, Baptiste
Zarka, Philippe
Lamy, Laurent
Aicardi, Stéphane
Loh, Alan
author_facet Louis, Corentin K.
Hess, Sébastien L. G
Cecconi, Baptiste
Zarka, Philippe
Lamy, Laurent
Aicardi, Stéphane
Loh, Alan
contents <p>ExPRES (Exoplanetary and Planetary Radio Emission Simulator) reproduces the occurrence of CMI-generated radio emissions from planetary magnetospheres, exoplanets or star-planet interacting systems in time-frequency plane, with special attention given to computation of the radio emission beaming at and near its source. Physical information drawn from such radio observations may include the location and dynamics of the radio sources, the type of current system leading to electron acceleration and their energy and, for exoplanetary systems, the magnetic field strength, the orbital period of the emitting body and the rotation period, tilt and offset of the planetary magnetic field. Most of these parameters can be remotely measured only via radio observations. ExPRES code provides the proper framework of analysis and interpretation for past (Cassini, Voyager, Galileo), current (Juno, ground-based radio telescopes) and future (BepiColombo, Juice) observations of planetary radio emissions, as well as for future detection of radio emissions from exoplanetary systems.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18682880
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle maserlib/ExPRES: Version 1.4.2
Louis, Corentin K.
Hess, Sébastien L. G
Cecconi, Baptiste
Zarka, Philippe
Lamy, Laurent
Aicardi, Stéphane
Loh, Alan
Radio Emissions
Simulations
Planetary
<p>ExPRES (Exoplanetary and Planetary Radio Emission Simulator) reproduces the occurrence of CMI-generated radio emissions from planetary magnetospheres, exoplanets or star-planet interacting systems in time-frequency plane, with special attention given to computation of the radio emission beaming at and near its source. Physical information drawn from such radio observations may include the location and dynamics of the radio sources, the type of current system leading to electron acceleration and their energy and, for exoplanetary systems, the magnetic field strength, the orbital period of the emitting body and the rotation period, tilt and offset of the planetary magnetic field. Most of these parameters can be remotely measured only via radio observations. ExPRES code provides the proper framework of analysis and interpretation for past (Cassini, Voyager, Galileo), current (Juno, ground-based radio telescopes) and future (BepiColombo, Juice) observations of planetary radio emissions, as well as for future detection of radio emissions from exoplanetary systems.</p>
title maserlib/ExPRES: Version 1.4.2
topic Radio Emissions
Simulations
Planetary
url https://doi.org/10.5281/zenodo.18682880