DKIST resolves sub-arcsec photospheric scattering polarization

Fuente: arXiv
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Autori principali: Zeuner, Franziska, Belluzzi, Luca, Ballester, Ernest Alsina, Casini, Roberto, Harrington, David M., Alemán, Tanausú del Pino, Bueno, Javier Trujillo
Natura: Preprint
Pubblicazione: 2025
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author Zeuner, Franziska
Belluzzi, Luca
Ballester, Ernest Alsina
Casini, Roberto
Harrington, David M.
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
author_facet Zeuner, Franziska
Belluzzi, Luca
Ballester, Ernest Alsina
Casini, Roberto
Harrington, David M.
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
contents Scattering polarization signals offer a unique diagnostics of the physical conditions in the solar atmosphere, in particular magnetic fields via the Hanle effect. However, their spatial structure remains poorly constrained due to the difficulty of achieving high spatial resolution and polarimetric sensitivity simultaneously. We present the first direct observation of sub-arcsecond structuring in the linear scattering polarization of the photospheric Sr i 4607 Å\, line near the solar disk center ($μ$ = 0.74), obtained with the Visible Spectro- Polarimeter (ViSP) at the Daniel K. Inouye Solar Telescope (DKIST). The data achieve about 0".2 resolution with 30 s integration and sufficient sensitivity to detect fine-scale patterns in the total linear polarization, which are evident in Sr i but absent in a nearby Fe i line that is simultaneously observed. Since this Fe i line is more Zeeman-sensitive than the Sr i 4607 Å\, this disparity confirms that the signals in the Sr i 4607 Å\, line arise from scattering. These data provide the first spatially resolved two-dimensional maps of photospheric scattering polarization at sub-arcsecond scales, enabled by the capabilities of a 4-meter solar telescope.
format Preprint
id arxiv_https___arxiv_org_abs_2510_20676
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle DKIST resolves sub-arcsec photospheric scattering polarization
Zeuner, Franziska
Belluzzi, Luca
Ballester, Ernest Alsina
Casini, Roberto
Harrington, David M.
Alemán, Tanausú del Pino
Bueno, Javier Trujillo
Solar and Stellar Astrophysics
Scattering polarization signals offer a unique diagnostics of the physical conditions in the solar atmosphere, in particular magnetic fields via the Hanle effect. However, their spatial structure remains poorly constrained due to the difficulty of achieving high spatial resolution and polarimetric sensitivity simultaneously. We present the first direct observation of sub-arcsecond structuring in the linear scattering polarization of the photospheric Sr i 4607 Å\, line near the solar disk center ($μ$ = 0.74), obtained with the Visible Spectro- Polarimeter (ViSP) at the Daniel K. Inouye Solar Telescope (DKIST). The data achieve about 0".2 resolution with 30 s integration and sufficient sensitivity to detect fine-scale patterns in the total linear polarization, which are evident in Sr i but absent in a nearby Fe i line that is simultaneously observed. Since this Fe i line is more Zeeman-sensitive than the Sr i 4607 Å\, this disparity confirms that the signals in the Sr i 4607 Å\, line arise from scattering. These data provide the first spatially resolved two-dimensional maps of photospheric scattering polarization at sub-arcsecond scales, enabled by the capabilities of a 4-meter solar telescope.
title DKIST resolves sub-arcsec photospheric scattering polarization
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2510.20676