Magnetic nulls and super-radial expansion in the solar corona

Magnetic fields in the Sun's outer atmosphere—the corona—control both solar-wind acceleration and the dynamics of solar eruptions. We present the first clear observational evidence of coronal magnetic nulls in off-limb linearly polarized observations of pseudostreamers, taken by the Coronal Multichannel Polarimeter (CoMP) telescope. These nulls represent regions where magnetic reconnection is likely to act as a catalyst for solar activity. CoMP linear-polarization observations also provide an independent, coronal proxy for magnetic expansion into the solar wind, a quantity often used to parameterize and predict the solar wind speed at Earth. We introduce a new method for explicitly calculating expansion factors from CoMP coronal linear-polarization observations, which does not require photospheric extrapolations. We conclude that linearly polarized light is a powerful new diagnostic of critical coronal magnetic topologies and the expanding magnetic flux tubes that channel the solar wind.

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Copyright 2017 the American Astronomical Society.


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Author Gibson, Sarah E. ORCID icon
Dalmasse, Kevin ORCID icon
Rachmeler, L. A.
De Rosa, M. L.
Tomczyk, Steven ORCID icon
de Toma, Giuliana ORCID icon
Burkepile, Joan R. ORCID icon
Galloy, Michael ORCID icon
Publisher UCAR/NCAR - Library

Publication Date 2017-05-08T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2025-12-26T02:30:11.832885
Metadata Record Identifier edu.ucar.opensky::articles:19755
Metadata Language eng; USA
Suggested Citation Gibson, Sarah E., Dalmasse, Kevin, Rachmeler, L. A., De Rosa, M. L., Tomczyk, Steven, de Toma, Giuliana, Burkepile, Joan R., Galloy, Michael. (2017). Magnetic nulls and super-radial expansion in the solar corona. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7t43w0v. Accessed 09 March 2026.

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