Penning-trap mass spectrometry and mean-field study of nuclear shape coexistence in the neutron-deficient lead region
Tarih
2017Yazar
LITVINOV, Yu. A.
George, S.
Herfurth, F.
Kowalska, M.
Kreim, S.
Lunney, D.
MARSH, B.
Neidherr, D.
Rosenbusch, M.
ROSSEL, R. E.
ROTHE, S.
Manea, V.
Ascher, P.
Atanasov, D.
BARZAKH, A. E.
Beck, D.
Blaum, K.
Borgmann, Ch.
Breitenfeldt, M.
Cocolios, T. E.
Schweikhard, L.
Wienholtz, F.
Wolf, R. N.
Zuber, K.
Cakirli, Rabia Burcu
Goodacre, T. Day
FEDOROV, D. V.
FEDOSSEEV, V. N.
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We present a study of nuclear shape coexistence in the region of neutron-deficient lead isotopes. The midshell gold isotopes Au-180,Au-185,Au-188,Au-190 (Z = 79), the two long-lived nuclear states in At-197 ( Z = 85), and the neutron-rich nuclide At-219 were produced by the ISOLDE facility at CERN and their masses were determined with the high-precision Penning-trap mass spectrometer ISOLTRAP. The studied gold isotopes address the trend of binding energies in a region of the nuclear chart where the nuclear charge radii show pronounced discontinuities. Significant deviations from the atomic-mass evaluation were found for Au-188,Au-190. The new trend of two-neutron separation energies is smoother, although it does reveal the onset of deformation. The origin of this effect is interpreted in connection to the odd-even staggering of binding energies, as well as theoretically by Hartree-Fock-Bogoliubov calculations including quasiparticle blocking. The role of blocking for reproducing the large odd-even staggering of charge radii in the mercury isotopic chain is illustrated.
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