Skip to main content

Research Repository

Advanced Search

The Possible Impact of L5 Magnetograms on Non-Potential Solar Coronal Magnetic Field Simulations

Weinzierl, Marion; Mackay, Duncan H.; Yeates, Anthony R.; Pevtsov, Alexei A.

The Possible Impact of L5 Magnetograms on Non-Potential Solar Coronal Magnetic Field Simulations Thumbnail


Authors

Marion Weinzierl

Duncan H. Mackay

Alexei A. Pevtsov



Contributors

Marion Weinzierl marion.weinzierl@durham.ac.uk
Other

M Weinzierl marion.weinzierl@durham.ac.uk
Other

Abstract

The proposed Carrington-L5 mission would bring instruments to the L5 Lagrange point to provide us with crucial data for space weather prediction. To assess the importance of including a magnetograph, we consider the possible differences in non-potential solar coronal magnetic field simulations when magnetograph observations are available from the L5 point, compared with an L1-based field of view (FOV). A timeseries of synoptic radial magnetic field maps is constructed to capture the emergence of two active regions from the L5 FOV. These regions are initially absent in the L1 magnetic field maps, but are included once they rotate into the L1 FOV. Non-potential simulations for these two sets of input data are compared in detail. Within the bipolar active regions themselves, differences in the magnetic field structure can exist between the two simulations once the active regions are included in both. These differences tend to reduce within 5 days of the active region being included in L1. The delayed emergence in L1 can, however, lead to significant persistent differences in long-range connectivity between the active regions and the surrounding fields, and also in the global magnetic energy. In particular, the open magnetic flux and the location of open magnetic footpoints, are sensitive to capturing the real-time of emergence. These results suggest that a magnetograph at L5 could significantly improve predictions of the non-potential corona, the interplanetary magnetic field, and of solar wind source regions on the Sun.

Citation

Weinzierl, M., Mackay, D. H., Yeates, A. R., & Pevtsov, A. A. (2016). The Possible Impact of L5 Magnetograms on Non-Potential Solar Coronal Magnetic Field Simulations. Astrophysical Journal, 828(2), Article 102. https://doi.org/10.3847/0004-637x/828/2/102

Journal Article Type Article
Acceptance Date Jul 9, 2016
Online Publication Date Sep 8, 2016
Publication Date Sep 10, 2016
Deposit Date Jul 8, 2016
Publicly Available Date Jul 8, 2016
Journal Astrophysical Journal
Print ISSN 0004-637X
Electronic ISSN 1538-4357
Publisher American Astronomical Society
Peer Reviewed Peer Reviewed
Volume 828
Issue 2
Article Number 102
DOI https://doi.org/10.3847/0004-637x/828/2/102

Files

Accepted Journal Article (4.5 Mb)
PDF

Copyright Statement
© 2016. The American Astronomical Society. All rights reserved.






You might also like



Downloadable Citations