Inferring Solar Magnetic fields From the Polarization of the Mg II h and k Lines

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Hauptverfasser: Li, Hao, Alemán, Tanausú del Pino, Bueno, Javier Trujillo
Format: Preprint
Veröffentlicht: 2025
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author Li, Hao
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
author_facet Li, Hao
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
contents The polarization of the Mg II h and k lines holds significant diagnostic potential for measuring chromospheric magnetic fields, which are crucial for understanding the physical processes governing the energy transport and dissipation in the solar upper atmosphere, as well as the subsequent heating of the chromosphere and corona. The Chromospheric Layer Spectropolarimeter was launched twice in 2019 and 2021, successfully acquiring spectropolarimetric observations across the Mg II h and k lines. The analysis of these observations confirms the capability of these lines for inferring magnetic fields in the upper chromosphere. In this review, we briefly introduce the physical mechanisms behind the polarization of the Mg II h and k lines, including the joint action of the Zeeman and Hanle effects, the magneto-optical effect, partial frequency redistribution, and atomic level polarization. We also provide an overview of recent progress in the interpretation of the Stokes profiles of the Mg II h and k lines.
format Preprint
id arxiv_https___arxiv_org_abs_2512_24578
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Inferring Solar Magnetic fields From the Polarization of the Mg II h and k Lines
Li, Hao
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
Solar and Stellar Astrophysics
The polarization of the Mg II h and k lines holds significant diagnostic potential for measuring chromospheric magnetic fields, which are crucial for understanding the physical processes governing the energy transport and dissipation in the solar upper atmosphere, as well as the subsequent heating of the chromosphere and corona. The Chromospheric Layer Spectropolarimeter was launched twice in 2019 and 2021, successfully acquiring spectropolarimetric observations across the Mg II h and k lines. The analysis of these observations confirms the capability of these lines for inferring magnetic fields in the upper chromosphere. In this review, we briefly introduce the physical mechanisms behind the polarization of the Mg II h and k lines, including the joint action of the Zeeman and Hanle effects, the magneto-optical effect, partial frequency redistribution, and atomic level polarization. We also provide an overview of recent progress in the interpretation of the Stokes profiles of the Mg II h and k lines.
title Inferring Solar Magnetic fields From the Polarization of the Mg II h and k Lines
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2512.24578