The Scattering Polarization of the Sr I 4607 \AA Line at the Diffraction Limit Resolution of a 1-m Telescope
Javier Trujillo Bueno, Nataliya Shchukina

TL;DR
This paper presents theoretical predictions for the scattering polarization of the Sr I 4607 Å line at high spatial resolution, demonstrating that small-scale polarization patterns are sensitive to magnetic fields and could be observed with a 1-m telescope.
Contribution
The study models the 3D scattering polarization in the solar photosphere, including effects of horizontal inhomogeneities and magnetic fields, providing predictions for high-resolution observations.
Findings
Significant polarization signals and fluctuations at the solar disk center.
Small-scale polarization patterns are sensitive to magnetic field models.
Potential for observing these patterns with a 1-m telescope and adaptive optics.
Abstract
One of the greatest challenges in solar and stellar physics in coming years will be to observe the Second Solar Spectrum with a spatial resolution significantly better than 1 arcsec. This type of scattering polarization observations would probably allow us to discover hitherto unknown aspects of the Sun's hidden magnetism. Here we report on some theoretical predictions for the photospheric line of Sr I at 4607 \AA, which we have obtained by solving the three-dimensional (3D) radiative transfer problem of scattering line polarization in a realistic hydrodynamical model of the solar photosphere. We have taken into account not only the anisotropy of the radiation field in the 3D medium and the Hanle effect of a tangled magnetic field, but also the symmetry breaking effects caused by the horizontal atmospheric inhomogeneities produced by the solar surface convection. Interestingly, the Q/I…
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