Two-color photoionization spectroscopy of uranium in a U-Ne hollow cathode discharge tube

A U--Ne hollow cathode discharge tube is used as a source of uranium atomic vapors as well as a photoelectron/photoion detector for carrying out two-color three-photon photoionization spectroscopy of uranium. Using the uranium excitation transition 0 cm (L 6 ) -> 16 900.38 cm (M7) at 591.5-nm las...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2005-04, Vol.80 (4-5), p.587-594
Hauptverfasser: DEV, Vas, SHAH, M. L, PULHANI, A. K, SURI, B. M
Format: Artikel
Sprache:eng
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Zusammenfassung:A U--Ne hollow cathode discharge tube is used as a source of uranium atomic vapors as well as a photoelectron/photoion detector for carrying out two-color three-photon photoionization spectroscopy of uranium. Using the uranium excitation transition 0 cm (L 6 ) -> 16 900.38 cm (M7) at 591.5-nm laser wavelength as a first step transition and scanning the wavelength of a second laser from 558 to 568 nm, high-lying odd-parity atomic levels of uranium are studied in the energy region 34 500--34 813 cm. All the expected 21 odd-parity atomic levels identified by various researchers in this region are observed in a single spectrum, demonstrating the high sensitivity achieved therein. In addition to this, we have identified eight autoionization resonances of uranium starting from its odd-parity atomic level at 33 801.06 cm pumped by two-photon excitation. Four out of these eight autoionization resonances are observed for the first time.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-005-1747-z