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Studies of the hyperfine structure and the isotope shifts in the 461.9 nm (1S0–3P1) magnetic-dipole line of Pb I are presented. As a light source the electrodeless discharge tube was used. The high resolution spectral apparatus consisted of a silver coated Fabry–Perot etalon and a grating spectrograph combined with a CCD camera used as a detector. In the analysis of the spectra a computer simulation technique was used. The experiments with the isotope 207Pb yielded the hyperfine structure splitting constant A for the 3P1 level of the 6s26p2 ground configuration. In the experiment with natural lead the isotope shifts between four stable isotopes (204, 206, 207, 208) were measured.
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Tom
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s. 529--533
Opis fizyczny
Bibliogr. 13 poz., tab., wykr.
Twórcy
autor
- Institute of Experimental Physics, University of Gdańsk, ul. Wita Stwosza 57, 80-952 Gdańsk, Poland
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autor
Bibliografia
- [1] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure study of several lines of 207P I, Physica Scripta 71(3), 2005, pp. 274–6.
- [2] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure study of several lines of 207Pb I –Part II, Physica Scripta 72(2–3), 2005, pp. 200–2.
- [3] WĄSOWICZ T.J., DROZDOWSKI R., KWELA J., Hyperfine structure and isotope shift study in singly ionized lead, The European Physical Journal D 36(3), 2005, pp. 249–55.
- [4] GRABOWSKI D., DROZDOWSKI R., KWELA J., J. HELDT, Hyperfine structure and Zeeman effect studies in the 6p7p–6p7s transitions in Bi II, Zeitschrift für Physik D: Atoms, Molecules and Clusters 38(4), 1996, pp. 289–93.
- [5] HÜHNERMANN H., PhD Thesis, Philipps Universitat, Marburg/Lahn 1967.
- [6] HÜHNERMANN H., J. Phys. (Paris) 28, Suppl. C2, 1967, p. 260.
- [7] MÜLLER G., PhD Thesis, Technischen Universitat, Berlin 1974.
- [8] MROZOWSKI S., Hyperfine structure and intensities of the forbidden lines of Pb I, Physical Review 58(12), 1940, pp. 1086–93.
- [9] SIMONS J.W., PALMER B.A., HOF D.E., OLDENBORG R.C., Characterization of several ultraviolet -visible emission lines from a lead hollow-cathode lamp, Journal of the Optical Society of America B 6(6), 1989, pp. 1097–1102.
- [10] BOUAZZA S., GOUGH D.S., HANNAFORD P., LOWE R.M., WILSON M., Isotope shifts and hyperfine structure in near-ultraviolet transitions of PbI by Doppler-free saturation spectroscopy, Physical Review A 63(1), 2001, p. 012516.
- [11] REEVES J.M., FORTSON E.N., Isotope shifts at 1.28 μm in Pb, Physical Review A 44(3), 1991, pp. R1439–41.
- [12] WEAST R.C., SELBY S.M., [Eds.] Handbook of Chemistry and Physics, 46th ed., Chemical Rubber Company, Cleveland, Ohio 1965.
- [13] COLLINS C.B., FARQUHAR R.M., RUSSELL R.D., Variations in the relative abundances of the isotopes of common lead, Physical Review 88(6), 1952, pp. 1275–6.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-49569f4a-7063-40e3-afe3-e5c3efde160c