Cargando…

Laser-assisted decay spectroscopy and mass spectrometry of $^{178}\mathrm{Au}$

A comprehensive study of the isotope $^{178}$ Au has been made at the CERN-ISOLDE facility, using resonance laser ionization. Two long-lived states in $^{178}$ Au were identified—a low-spin ground state and a high-spin isomer—each of which were produced as pure beams. Using the ISOLTRAP precisio...

Descripción completa

Detalles Bibliográficos
Autores principales: Cubiss, J G, Andreyev, A N, Barzakh, A E, Manea, V, Al Monthery, M, Althubiti, N A, Andel, B, Antalic, S, Atanasov, D, Blaum, K, Cocolios, T E, Day Goodacre, T, de Roubin, A, Farooq-Smith, G J, Fedorov, D V, Fedosseev, V N, Fink, D A, Gaffney, L P, Ghys, L, Harding, R D, Herfurth, F, Huyse, M, Imai, N, Joss, D T, Kreim, S, Lunney, D, Lynch, K M, Marsh, B A, Martinez Palenzuela, Y, Molkanov, P L, Neidherr, D, O'Neill, G G, Page, R D, Rosenbusch, M, Rossel, R E, Rothe, S, Schweikhard, L, Seliverstov, M D, Sels, S, Stott, A, Van Beveren, C, Van Duppen, P, Verstraelen, E, Welker, A, Wienholtz, F, Wolf, R N, Zuber, K
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/physrevc.102.044332
http://cds.cern.ch/record/2777067
Descripción
Sumario:A comprehensive study of the isotope $^{178}$ Au has been made at the CERN-ISOLDE facility, using resonance laser ionization. Two long-lived states in $^{178}$ Au were identified—a low-spin ground state and a high-spin isomer—each of which were produced as pure beams. Using the ISOLTRAP precision Penning trap, the excitation energy of the isomeric state in $^{178}$ Au was determined to be $E$$^{*}$ = 189 ( 14 ) keV . The α -decay fine structure patterns of the two states were studied using the Windmill decay station, providing information on the low-lying states in the daughter nucleus $174$ Ir . Nuclear spin assignments of $I$ ( $^{178}$ Au g ) = ( 2 , 3 ) and I ( $^{178}$ Au $^{m}$ ) = ( 7 , 8 ) are made based on the observed $\beta$ -decay feeding and hyperfine structure intensity patterns. These spin assignments are used for fitting the hyperfine structures of the two states from which values for the magnetic dipole moments are extracted. The extracted moments are compared with calculations using additivity relations to establish the most probable configurations for $^{178}$ Au $^{g,m}$.