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Öğe Experimental investigation of the hyperfine structure of Tm I with Fourier transform spectroscopy part b: In the NIR wavelength range from 700 nm to 2250 nm(PERGAMON-ELSEVIER SCIENCE, 2022) Kebapçı, Taha Yusuf; Sert, Sami; Parlatan, Şeyma; Öztürk, İpek Kanat; Başar, Gönül; Başar, Günay; Tamanis, Maris; Kroger, SophieIn this study, we investigated the hyperfine structure of 43 spectral lines of atomic thulium. We analyzed Fourier-transform spectra in the wavelength range from 700 nm to 2250 nm, which corresponds to the wavenumber range from 14300 cm(-1) to 4440 cm(-1), respectively. The excited thulium atoms were generated in a hollow-cathode lamp. As a result of this investigation, the magnetic-dipole hyperfine constant A of 17 fine structure levels have been determined experimentally, 14 of them for the first time. The magnetic-dipole hyperfine constant values of the three remaining levels, reported in the literature, differed significantly from the results of our determination. (C) 2022 Elsevier Ltd. All rights reserved.Öğe Hyperfine structure investigation of singly Ionized thulium in fourier-transform spectra(IOP publishing, 2024) Kebapçı, Taha Yusuf; Parlatan, Şeyma; Sert, Sami; Öztürk, İpek Kanat; Başar, Gönül; Şahin, Timur; Bilir, Selçuk; Ferber, Ruvin; Tamanis, Maris; Kroger, SophieThe hyperfine structure of 40 spectral lines of singly ionized thulium (Tm ii) in emission spectra from a hollow cathode discharge lamp measured with a Fourier transform spectrometer in the wavelength range from 335 to 2345 nm has been investigated. As a result of the analysis, the magnetic dipole hyperfine structure constants A for 27 fine structure levels of Tm ii were determined for the first time. In addition, the values of two magnetic dipole hyperfine structure constants A from the literature were declared incorrect, and the corrected values were given.