L'étude à haute résolution du spectre d'étincelle de l'isotope 229 du thorium, dans le domaine infra-rouge situé entre 1 et 3 μ, a été effectuée par spectrométrie de Fourier. La détermination des fonctions d'onde des configurations paires (ds2, d2 s, d3) et impaires (fd2, fds, fs2), a permis de calculer les constantes hyperfines des électrons a7s, a6d, b6d, a5f et b 5f relatives à ces deux groupes de configurations, les données expérimentales étant les valeurs des constantes hyperfines A et B de vingt niveaux que nous avons pu atteindre. On en déduit la valeur du moment magnétique trouvé égal à μ229 = (+ 0,45 ± 0,04) μ N, ainsi que l'ordre de grandeur du moment quadrupolaire (Q229 = + 4,3 barns à 20 % près)
The absorption spectrum of lutetium vapor in the ultraviolet region has been photographed, using the Argonne thirty-foot spectrograph and an inductively heated furnace. Two hundred lines have been measured with an accuracy of ± 0.004 Å, and approximately 91 % of these have been classified as members of six previously unobserved Rydberg series. Four of these involve transitions from the two lowest lying levels, 5 d 6 s2(2D3/2, 5/2), and two from the first excited multiplet, 6 s2 6 p(2P01/2, 3/2), which is sufficiently populated at the temperature used in the experiment. A value for the first ionization limit of Lu I has been derived from the extrapolation of the serie 5 d 6 s2(2D5/2)-nf 6 s2(2F07/2), which was measured to n = 36 and wich is pratically unperturbed. The value found was 43 762.39 ± 0.10 cm-1
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