Improving the atomic modelling for solar UV radiative transfer calculations

Fuente: arXiv
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Hauptverfasser: Dufresne, R. P., Del Zanna, G., Osborne, C. M. J.
Format: Preprint
Veröffentlicht: 2025
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author Dufresne, R. P.
Del Zanna, G.
Osborne, C. M. J.
author_facet Dufresne, R. P.
Del Zanna, G.
Osborne, C. M. J.
contents Radiative transfer calculations have been produced over the years for many lines and continua in the UV wavelength range of solar and cool stellar atmospheres for a variety of conditions. Despite significant improvements in computing power and availability of atomic data over time, atomic models are often still limited in size and rely on approximations for data. There have also been inconsistencies in the way photo-ionisation and radiative recombination have been treated. Here, we incorporate into the Lightweaver radiative transfer code new data and updated modelling of atomic processes for the low charge states of C, Si and S. Data are taken from the CHIANTI database and other widely-available sources for the relevant elements. We show the significant impact this has on the UV continua in the 1100-1700Å region, especially for Si. The results are in much better agreement with averaged, quiet Sun observations, and remove the need to invoke "missing opacity" to resolve discrepancies. The present treatment has important implications for radiative transfer calculations and the model atmospheres used as inputs.
format Preprint
id arxiv_https___arxiv_org_abs_2508_06422
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Improving the atomic modelling for solar UV radiative transfer calculations
Dufresne, R. P.
Del Zanna, G.
Osborne, C. M. J.
Solar and Stellar Astrophysics
Instrumentation and Methods for Astrophysics
Atomic Physics
Radiative transfer calculations have been produced over the years for many lines and continua in the UV wavelength range of solar and cool stellar atmospheres for a variety of conditions. Despite significant improvements in computing power and availability of atomic data over time, atomic models are often still limited in size and rely on approximations for data. There have also been inconsistencies in the way photo-ionisation and radiative recombination have been treated. Here, we incorporate into the Lightweaver radiative transfer code new data and updated modelling of atomic processes for the low charge states of C, Si and S. Data are taken from the CHIANTI database and other widely-available sources for the relevant elements. We show the significant impact this has on the UV continua in the 1100-1700Å region, especially for Si. The results are in much better agreement with averaged, quiet Sun observations, and remove the need to invoke "missing opacity" to resolve discrepancies. The present treatment has important implications for radiative transfer calculations and the model atmospheres used as inputs.
title Improving the atomic modelling for solar UV radiative transfer calculations
topic Solar and Stellar Astrophysics
Instrumentation and Methods for Astrophysics
Atomic Physics
url https://arxiv.org/abs/2508.06422