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α -decay properties of $^{200,202}$FR

Background: The neutron-deficient lead region provides a range of nuclear phenomena, including isomerism at low energies. This phenomenon can be studied by α decay because the degree of hindrance of α decay provides information on the change in nuclear structure of connected states. Purpose: The aim...

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Detalles Bibliográficos
Autores principales: Ghys, L, Andreyev, A N, Huyse, M, Van Duppen, P, Antalic, S, Barzakh, A, Capponi, L, Cocolios, T E, Cubiss, J, Derkx, X, De Witte, H, Elseviers, J, Hessberger, F P, Kalaninová, Z, Köster, U, Lane, J F W, Liberati, V, Mitsuoka, S, Nagame, Y, Nishio, K, Ota, S, Pauwels, D, Page, R D, Popescu, L, Radulov, D, Rajabali, M M, Rapisarda, E, Sandhu, K, Truesdale, V L, Van den Bergh, P, Wakabayashi, Y
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.100.054310
http://cds.cern.ch/record/2701786
Descripción
Sumario:Background: The neutron-deficient lead region provides a range of nuclear phenomena, including isomerism at low energies. This phenomenon can be studied by α decay because the degree of hindrance of α decay provides information on the change in nuclear structure of connected states. Purpose: The aim of this work was to investigate the α-decay properties of $^{200,202}$FR and daughter products. Method: Neutron-deficient francium nuclei are produced at ISOLDE-CERN bombarding a UCx target with 1.4 GeV protons. Surface ionization and mass-separation techniques were employed to provide a pure radioactive ion beam at a radiation-detection setup. Results: Due to the very high statistics and the high beam purity, improved decay data for $^{202}$FR and its daughters were obtained. In particular, this data set allowed us to identify many fine-structure α lines with a relative reduced α-decay width up to five orders of magnitude lower as the strongest ground-to-ground state or isomeric-to-isomeric state α-decay transition. In addition, several half-life values were extracted with similar or better precision as compared with the literature. Conclusions: The observation of crossover transitions positioned the isomeric high-spin level of $^{198}$At at an excitation energy of 265(3) keV. Half-life values of 4.47(5) s and 1.28(10) s were extracted for the ground state and isomeric state of $^{198}$At and 52(3) ms for the ground-state decay of $^{200}$FR. Furthermore, α-decay schemes for Fr202 and its daughter $^{198}$At could be constructed.