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論文

$$beta$$-delayed fission of isomers in $$^{188}$$Bi

Andel, B.*; Andreyev, A. N.; Antalic, S.*; Al Monthery, M.*; Barzakh, A.*; Bissell, M. L.*; Chrysalidis, K.*; 他29名*

Physical Review C, 102(1), p.014319_1 - 014319_12, 2020/07

$$beta$$-delayed fission ($$beta$$DF) decay of a low-spin (ls) and a high-spin (hs) isomer in $$^{188}$$Bi was studied at the ISOLDE facility at CERN. Their $$beta$$DF partial half-lives were determined: $$T_{rm 1/2p}$$, $$beta$$DF($$^{188}$$Bi$$^{hs}$$)= 5.6(8) $$times$$ 10$$^{3}$$ s and $$T_{rm 1/2p}$$, $$beta$$DF($$^{188}$$Bi$$^{ls}$$)=1.7(6) $$times$$ 10$$^{3}$$ s. This work is the first $$beta$$DF study of two states in one isotope and allows the spin dependence of low-energy fission to be explored. The fission fragment mass distribution of a daughter nuclide $$^{188}$$Pb, following the $$beta$$ decay of the high-spin isomer, was deduced and indicates a mixture of symmetric and asymmetric fission modes.

論文

Shape coexistence in $$^{187}$$Au studied by laser spectroscopy

Barzakh, A. E.*; Atanasov, D.*; Andreyev, A. N.; Al Monthery, M.*; Althubiti, N. A.*; Andel, B.*; Antalic, S.*; Blaum, K.*; 他34名*

Physical Review C, 101(6), p.064321_1 - 064321_7, 2020/06

Hyperfine-structure parameters and isotope shift of the $$9/2^{-}$$ isomeric state in $$^{187}$$Au relative to $$^{197}$$Au for the 267.6-nm atomic transition have been measured for the first time using the in-source resonance-ionization spectroscopy technique. The magnetic dipole moment and change in the mean-square charge radius for this $$9/2^{-}$$ isomer have been deduced. The observed large isomer shift relative to the $$1/2^{+}$$ ground state in $$^{187}$$Au confirms the occurrence of the shape coexistence in $$^{187}$$Au proposed earlier from the analysis of the nuclear spectroscopic data and particle plus triaxial rotor calculations. The analysis of the magnetic moment supports the previously proposed $$9/2^{-}$$, $$1/2^{-}$$[541] assignment at moderate prolate deformation for $$^{187}$$Au$$^{m}$$.

論文

Hyperfine anomaly in gold and magnetic moments of $$I^{pi}$$ = 11/2$$^{-}$$ gold isomers

Barzakh, A. E.*; Atanasov, D.*; Andreyev, A. N.; Al Monthery, M.*; Althubiti, N. A.*; Andel, B.*; Antalic, S.*; Blaum, K.*; 他39名*

Physical Review C, 101(3), p.034308_1 - 034308_9, 2020/03

Hyperfine-structure constants for the $$I^{pi}$$ = 11/2$$^{-}$$ gold isomers $$^{177,191,193,195}$$Au$$^{m}$$ have been measured at CERN-ISOLDE, using the in-source laser resonance-ionization spectroscopy technique. From the measured hyperfine constants the differences between hyperfine anomalies have been deduced. These differential hyperfine anomaly values have been used to determine the hyperfine anomaly relative to the stable $$^{197}$$Au with advanced atomic calculations. Magnetic dipole moments for the gold isomers in question have been deduced, taking into account the corresponding relative hyperfine-anomaly values. It has been shown that the commonly used prescription for the extraction of the magnetic moment values for the gold isotopes should be reconsidered. The magnetic moments calculated by this prescription have been reevaluated by properly accounting for the hyperfine anomaly, which is as large as 10% for several gold isotopes.

論文

Identification of a 6.6$$mu$$s isomeric state in $$^{175}$$Ir

Gillespie, S. A.*; Andreyev, A. N.; Al Monthery, M.*; Barton, C. J.*; Antalic, S.*; Auranen, K.*; Badran, H.*; Cox, D.*; Cubiss, J. G.*; O'Donnell, D.*; et al.

Physical Review C, 99(6), p.064310_1 - 064310_6, 2019/06

 被引用回数:0 パーセンタイル:100(Physics, Nuclear)

An experiment has been performed to study excited states in the neutron-deficient nucleus $$^{175}$$Ir via the use of the JUROGAM II high-purity germanium detector array and the RITU gas-filled separator at JYFL, Jyv$"a$skyl$"a$. By using isomer tagging, an isomeric state with a half-life of 6.58(15) $$mu$$s has been observed in $$^{175}$$Ir for the first time. It has been established that the isomer decays via a 45.2 ($$E1$$) - 26.1 ($$M1$$) keV cascade to new states below the previously reported ground state in $$^{175}$$Ir with $$I^{pi} = (5/2^{-})$$. We now reassign this $$(5/2^{-})$$ state to the isomeric state discovered in this study.

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