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Stability of the heaviest elements: $K$ isomer in $^{250}\mathrm{No}$

Decay spectroscopy of $^{250}\mathrm{No}$ has been performed using digital electronics and pulse-shape analysis of the fast nuclear decays for the first time. Previous studies of $^{250}\mathrm{No}$ reported two distinct fission decay lifetimes, related to the direct fission of the ground state and...

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Detalles Bibliográficos
Autores principales: Kallunkathariyil, J, Sulignano, B, Greenlees, P T, Khuyagbaatar, J, Theisen, Ch, Auranen, K, Badran, H, Bisso, F, Brionnet, P, Briselet, R, Drouart, A, Favier, Z, Goigoux, T, Grahn, T, Hauschild, K, Herzan, A, Heßberger, F P, Jakobsson, U, Julin, R, Juutinen, S, Konki, J, Leino, M, Lightfoot, A, Pakarinen, J, Papadakis, P, Partanen, J, Peura, P, Rahkila, P, Rezynkina, K, Ruotsalainen, P, Sandzelius, M, Saren, J, Scholey, C, Siciliano, M, Sorri, J, Stolze, S, Svirikhin, A I, Uusitalo, J, Vandebrouck, M, Ward, A, Wraith, C, Zielińska, M
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.101.011301
http://cds.cern.ch/record/2800353