Incorporating Magnetic Field Characteristics into EUV-Based Automated Segmentation of Coronal Holes

Fuente: arXiv
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Autori principali: Grajeda, Jeremy A., Boucheron, Laura E., Kirk, Michael S., Leisner, Andrew, Arge, C. Nick, Landeros, Jaime A.
Natura: Preprint
Pubblicazione: 2025
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author Grajeda, Jeremy A.
Boucheron, Laura E.
Kirk, Michael S.
Leisner, Andrew
Arge, C. Nick
Landeros, Jaime A.
author_facet Grajeda, Jeremy A.
Boucheron, Laura E.
Kirk, Michael S.
Leisner, Andrew
Arge, C. Nick
Landeros, Jaime A.
contents Coronal holes (CHs) are magnetically open regions that allow hot coronal plasma to escape from the Sun and form the high-speed solar wind. This wind can interact with Earth's magnetic field. For this reason, developing an accurate understanding of CH regions is vital for understanding space weather and its effects on Earth. The process of identifying CH regions typically relies on extreme ultraviolet (EUV) imagery, leveraging the fact that CHs appear dark at these wavelengths. Accurate identification of CHs in EUV, however, can be difficult due to a variety of factors, including stray light from nearby regions, limb brightening, and the presence of filaments (which also appear dark, but are not sources of solar wind). In order to overcome these issues, this work incorporates photospheric magnetic field data into a classical EUV-based segmentation algorithm based on the active contours without edges (ACWE) segmentation method. In this work magnetic field data are incorporated directly into the segmentation process, serving both as a method for removing non-CH regions in advance, and as a method to constrain evolution of the segmented CH boundary. This reduces the presence of filaments while allowing the segmentation to include CH regions that may be difficult to identify due to inconsistent intensities.
format Preprint
id arxiv_https___arxiv_org_abs_2501_13211
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Incorporating Magnetic Field Characteristics into EUV-Based Automated Segmentation of Coronal Holes
Grajeda, Jeremy A.
Boucheron, Laura E.
Kirk, Michael S.
Leisner, Andrew
Arge, C. Nick
Landeros, Jaime A.
Solar and Stellar Astrophysics
Instrumentation and Methods for Astrophysics
Coronal holes (CHs) are magnetically open regions that allow hot coronal plasma to escape from the Sun and form the high-speed solar wind. This wind can interact with Earth's magnetic field. For this reason, developing an accurate understanding of CH regions is vital for understanding space weather and its effects on Earth. The process of identifying CH regions typically relies on extreme ultraviolet (EUV) imagery, leveraging the fact that CHs appear dark at these wavelengths. Accurate identification of CHs in EUV, however, can be difficult due to a variety of factors, including stray light from nearby regions, limb brightening, and the presence of filaments (which also appear dark, but are not sources of solar wind). In order to overcome these issues, this work incorporates photospheric magnetic field data into a classical EUV-based segmentation algorithm based on the active contours without edges (ACWE) segmentation method. In this work magnetic field data are incorporated directly into the segmentation process, serving both as a method for removing non-CH regions in advance, and as a method to constrain evolution of the segmented CH boundary. This reduces the presence of filaments while allowing the segmentation to include CH regions that may be difficult to identify due to inconsistent intensities.
title Incorporating Magnetic Field Characteristics into EUV-Based Automated Segmentation of Coronal Holes
topic Solar and Stellar Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2501.13211