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Determination of nuclear spins of short-lived isotopes by laser induced fluorescence

The spins of several nuclear ground and isomeric states have been measured for a number of mercury isotopes. The fluorescent light from the 6s6p/sup 3/P/sub 1/ state is observed at 2537 AA after excitation with the frequency doubled output of a pulsed dye laser. Four different laser induced fluoresc...

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Detalles Bibliográficos
Autores principales: Buchinger, F, Dabkiewicz, P, Kremmling, H, Kühl, T, Müller, A C, Schüssler, H A
Lenguaje:eng
Publicado: 1980
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0029-554X(80)91095-2
http://cds.cern.ch/record/879324
Descripción
Sumario:The spins of several nuclear ground and isomeric states have been measured for a number of mercury isotopes. The fluorescent light from the 6s6p/sup 3/P/sub 1/ state is observed at 2537 AA after excitation with the frequency doubled output of a pulsed dye laser. Four different laser induced fluorescence techniques were tested for their applicability: double resonance, Hanle effect, time delayed integral Hanle beats, and time resolved quantum beats. The sensitivity and selectivity of these models are compared with emphasis on the determination of spins of nuclei far from beta-stability, where short half lives and low production yields restrict the number of available atoms. The experiments were carried out on-line with the ISOLDE isotope separator at CERN at densities as low as 10/sup 6/ atoms/cm /sup 2/. Results for the very neutron deficient high spin mercury isomers with half lives of several seconds, but also for the ground states of the abundant low spin stable mercury isotopes, are given as examples. The test measurements determined the nuclear spins of the odd /sup 185m-191m/Hg isomers to be I=13/2. (11 refs).