Katalog Plus
Bibliothek der Frankfurt UAS
Bald neuer Katalog: sichern Sie sich schon vorab Ihre persönlichen Merklisten im Nutzerkonto: Anleitung.
Dieses Ergebnis aus BASE kann Gästen nicht angezeigt werden.  Login für vollen Zugriff.

3D NLTE modelling of Y and Eu: Centre-to-limb variation and solar abundances

Title: 3D NLTE modelling of Y and Eu: Centre-to-limb variation and solar abundances
Authors: Storm, N.; Barklem, P.S.; Yakovleva, S.A.; Belyaev, A.K.; Palmeri, P.; Quinet, Pascal; Lodders, K.; Bergemann, M.; Hoppe, R.
Source: Astronomy and Astrophysics, 683, A200 (2024-03)
Publisher Information: EDP Sciences
Publication Year: 2024
Collection: University of Liège: ORBi (Open Repository and Bibliography)
Subject Terms: Atomic data; Line: formation; Methods: observational; Sun: abundances; Sun: atmosphere; Line formations; Methods:observational; Nonlocal thermal equilibrium; S-process; Solar abundances; Solar disk; Thermal equilibrium models; Astronomy and Astrophysics; Space and Planetary Science; astro-ph.SR; Physical; chemical; mathematical & earth Sciences; Physics; Physique; chimie; mathématiques & sciences de la terre
Description: peer reviewed ; Context. Abundances of s- and r-process elements in Sun-like stars constrain nucleosynthesis in extreme astrophysical events, such as compact binary mergers and explosions of highly magnetised rapidly rotating massive stars. Aims. We measure solar abundances of yttrium (Y) and europium (Eu) using 3D non-local thermal equilibrium (NLTE) models. We use the model to determine the abundance of Y, and also explore the model's ability to reproduce the solar centre-to-limb variation of its lines. In addition, we determine the Eu abundance using solar disc-centre and integrated flux spectra. Methods. We developed an NLTE model of Eu and updated our model of Y with collisional data from detailed quantum-mechanical calculations. We used the IAG spatially resolved high-resolution solar spectra to derive the solar abundances of Y across the solar disc and of Eu for integrated flux and at disc centre using a set of carefully selected lines and a 3D radiation-hydrodynamics model of the solar atmosphere. Results. We find 3D NLTE solar abundances of A(Y)3D NLTE = 2.30 ± 0.03stat ± 0.07syst dex based on observations at all angles and A(Eu) = 0.57 ± 0.01stat ± 0.06syst dex based on the integrated flux and disc-centre intensity. 3D NLTE modelling offers the most consistent abundances across the solar disc, and resolves the problem of severe systematic bias in Y and Eu abundances inherent to 1D LTE, 1D NLTE, and 3D LTE modelling.
Document Type: article in journal/newspaper
Language: English
ISSN: 0004-6361; 1432-0746
Relation: https://www.aanda.org/10.1051/0004-6361/202348971/pdf; urn:issn:0004-6361; urn:issn:1432-0746; https://orbi.uliege.be/handle/2268/333301; info:hdl:2268/333301; arXiV:2401.13450v1
DOI: 10.1051/0004-6361/202348971
Availability: https://orbi.uliege.be/handle/2268/333301; https://orbi.uliege.be/bitstream/2268/333301/1/Paper310_aa48971-23.pdf; https://doi.org/10.1051/0004-6361/202348971
Rights: open access ; http://purl.org/coar/access_right/c_abf2 ; info:eu-repo/semantics/openAccess
Accession Number: edsbas.64DFFD8
Database: BASE