Lifetime analysis of short-lived states in N-17

S. Ziliani,M. Ciemala,F. C. L. Crespi,S. Leoni,B. Fornal,A. Maj,P. Bednarczyk,G. Benzoni, A. Bracco,C. Boiano, S. Bottoni, S. Brambilla,M. Bast,M. Beckers, T. Braunroth,F. Camera,N. Cieplicka-Orynczak, E. Clement, S. Coelli,O. Dorvaux,S. Erturk,G. De France, C. Fransen,A. Goldkuhle, J. Grebosz,M. N. Harakeh,L. W. Iskra, B. Jacquot,A. Karpov,M. Kicinska-Habior,Y. Kim,M. Kmiecik,A. Lemasson, S. M. Lenzi, M. Lewitowicz,H. Li, I. Matea,K. Mazurek, C. Michelagnoli, M. Matejska-Minda,B. Million, C. Mueller-Gatermann, V. Nanal, P. Napiorkowski,D. R. Napoli,R. Palit, M. Rejmund,Ch. Schmitt, M. Stanoiu,I. Stefan, E. Vardaci,B. Wasilewska,O. Wieland,M. Zieblinski, M. Zielinska

NUOVO CIMENTO C-COLLOQUIA AND COMMUNICATIONS IN PHYSICS(2021)

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摘要
A recent extension of the Doppler-shift attenuation method to measure short lifetimes of states populated in low-energy binary reactions is applied to the case of N-17. The reliability of the technique is confirmed by measuring the lifetime of the 5515 keV 3/2(-) state, which is depopulated by two different gamma rays. The method is used to measure the lifetime of the 5170 keV (9/2(+)) state in the same nucleus. Comparisons with large-scale shell-model predictions are given as well.
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