alpha-decay spectroscopy of the N=130 isotones Ra-218 and Th-220: Mitigation of alpha-particle energy summing with implanted nuclei

E. Parr,J. F. Smith,P. T. Greenlees,K. Auranen, P. A. Butler,R. Chapman,D. M. Cox,D. M. Cullen,L. P. Gaffney,T. Grahn, E. T. Gregor, L. Grocutt,A. Herzan,R-D Herzberg, D. Hodge, U. Jakobsson, R. Julin, S. Asztalos,J. Keatings,J. Konki, M. Leino, P. P. McKee, C. McPeake,D. Mengoni,A. K. Mistry, K. F. Mulholland,B. S. Nara Singh, G. G. O'Neill,J. Pakarinen,P. Papadakis,J. Partanen, P. Peura,P. Rahkila,P. Ruotsalainen,M. Sandzelius, J. Saren,M. Scheck, C. Scholey,M. Siciliano,M. Smolen, J. Sorri,P. Spagnoletti,K. M. Spohr, S. Stolze,M. J. Taylor,J. Uusitalo

Physical Review C(2019)

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摘要
An analysis technique has been developed in order to mitigate energy summing due to sequential short-lived alpha decays from nuclei implanted into a silicon detector. Using this technique, alpha-decay spectroscopy of the N = 130 isotones Ra-218 (Z = 88) and Th-220 (Z = 90) has been performed. The energies of the alpha particles emitted in the Ra-218 -> Rn-214 and Th-220 -> Ra-216 ground-state-to-ground-state decays have been measured to be 8381(4) keV and 8818(13) keV, respectively. The half-lives of the ground states of Ra-218 and Th-220 have been measured to be 25.99(10) mu s and 10.4(4) mu s, respectively. The half-lives of the ground states of the alpha-decay daughters, Rn-214 and Ra-216, have been measured to be 259(3) ns and 161(11) ns, respectively. Fine structure in the alpha decay of Ra-218 has been observed for the first time, populating the 695-keV 2(1)(+) state in Rn-214. The fine-structure a decay has an alpha-particle energy of 7715(40) keV and branching ratio b(alpha) = 0.123(11)%.
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