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Experimental oscillator strengths of Al I lines for near-infrared astrophysical spectroscopy
Malmö University, Faculty of Technology and Society (TS), Department of Materials Science and Applied Mathematics (MTM). Lund Observatory, Division of Astrophysics, Department of Physics, Sölvegatan 27, Box 43, 221 00 Lund, Sweden.
Malmö University, Faculty of Technology and Society (TS), Department of Materials Science and Applied Mathematics (MTM).ORCID iD: 0000-0001-9853-2555
Malmö University, Faculty of Technology and Society (TS), Department of Materials Science and Applied Mathematics (MTM).ORCID iD: 0000-0003-0375-6076
2023 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 672, article id A197Article in journal (Refereed) Published
Abstract [en]

Context. Elemental abundances can be determined from stellar spectra, making it possible to study galactic formation and evolution. Accurate atomic data is essential for the reliable interpretation and modeling of astrophysical spectra. In this work, we perform laboratory studies on neutral aluminium. This element is found, for example, in young, massive stars and it is a key element for tracing ongoing nucleosynthesis throughout the Galaxy. The near-infrared (NIR) wavelength region is of particular importance, since extinction in this region is lower than for optical wavelengths. This makes the NIR wavelength region a better probe for highly obscured regions, such as those located close to the Galactic center.

Aims. We investigate the spectrum of neutral aluminium with the aim to provide oscillator strengths (f-values) of improved accuracy for lines in the NIR and optical regions (670–4200 nm).

Methods. Measurements of high-resolution spectra were performed using a Fourier transform spectrometer and a hollow cathode discharge lamp. The f-values were derived from experimental line intensities combined with published radiative lifetimes.

Results. We report oscillator strengths for 12 lines in the NIR and optical spectral regions, with an accuracy between 2 and 11%, as well as branching fractions for an additional 16 lines.

 

Place, publisher, year, edition, pages
EDP Sciences, 2023. Vol. 672, article id A197
Keywords [en]
atomic data, methods: laboratory: atomic, techniques: spectroscopic
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
URN: urn:nbn:se:mau:diva-60505DOI: 10.1051/0004-6361/202245394ISI: 000976785300010Scopus ID: 2-s2.0-85156225882OAI: oai:DiVA.org:mau-60505DiVA, id: diva2:1766317
Part of project
Experimental and computational atomic astrophysics, Swedish Research Council
Funder
Swedish Research Council, 2016-04185Available from: 2023-06-12 Created: 2023-06-12 Last updated: 2023-10-26Bibliographically approved

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Burheim, MadeleineHartman, HenrikNilsson, Hampus

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