These data comprise the solar photospheric magnetic field maps used in Barnes et al. (2022), "Implications of Different Solar Photospheric Flux-Transport Models for Global Coronal and Heliospheric Modeling", published in the Astrophysical Journal. In that study, comparisons between the sector boundaries, open-flux regions, null points and solar wind models were determined from different surface flux-transport models of the global solar photospheric flux. This Dataverse contains the photospheric maps from both the ADAPT-HMI framework and the SSW-PFSS package for use in replicating the results of Barnes et al. (2022).
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Oct 26, 2022
DeRosa, Marc; Barnes, Graham; Jones, Shaela I.; Arge, Charles N.; Henney, Carl J.; Cheung, Mark C. M., 2022, "Replication Data for "Implications of Different Solar Photospheric Flux-Transport Models for Global Coronal and Heliospheric Modeling": SSW-PFSS maps", https://doi.org/10.7910/DVN/CFF76Z, Harvard Dataverse, V1
These data comprise the solar photospheric magnetic field maps used in Barnes et al. (2022), "Implications of Different Solar Photospheric Flux-Transport Models for Global Coronal and Heliospheric Modeling", published in the Astrophysical Journal. In that study, comparisons between the sector boundaries, open-flux regions, null points and solar win...
Oct 26, 2022
Henney, Carl J.; Barnes, Graham; DeRosa, Marc L.; Jones, Shaela I.; Arge, Charles N.; Cheung, Mark C. M., 2022, "Replication Data for "Implications of Different Solar Photospheric Flux-Transport Models for Global Coronal and Heliospheric Modeling": ADAPT-HMI maps", https://doi.org/10.7910/DVN/EFJXHY, Harvard Dataverse, V1
These data comprise the solar photospheric magnetic field maps used in Barnes et al. (2022), "Implications of Different Solar Photospheric Flux-Transport Models for Global Coronal and Heliospheric Modeling", published in the Astrophysical Journal. In that study, comparisons between the sector boundaries, open-flux regions, null points and solar win...
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