Orbital dependent nucleonic pairing in the lightest known isotopes of tin
Darby, Iain G. · Grzywacz, Robert K. · Batchelder, Jon C. · Bingham, Carrol R. · Cartegni, Lucia · Gross, Carl J. · Hjorth-Jensen, Morten · Joss, David T. · Liddick, Sean N. · Nazarewicz, Witold · Padgett, Stephen · Page, Robert D. · Papenbrock, Thomas · Rajabali, Mustafa M. · Rotureau, Jimmy · Rykaczewski, Krzysztof P.
الأصل · EN
By studying the 109Xe-->105Te-->101Sn superallowed alpha-decay chain, we observe low-lying states in 101Sn, the one-neutron system outside doubly magic 100Sn. We find that the spins of the ground state (J = 7=2) and first excited state (J = 5=2) in 101Sn are reversed with respect to the traditional level ordering postulated for 103Sn and the heavier tin isotopes. Through simple arguments and state-of-the-art shell model calculations we explain this unexpected switch in terms of a transition from the single-particle regime to the collective mode in which orbital-dependent pairing correlations, dominate.
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