2020
DOI: 10.1103/physrevc.101.044311
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Shape evolution of neutron-rich Mo106,108,110 isotopes in the triaxial degree of freedom

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Cited by 22 publications
(44 citation statements)
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References 59 publications
(73 reference statements)
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“…Coincidence relationships observed in the current work are consistent with this decay pattern, and confirmed by Ref. [5]. Spins and parities, and the β-delayed neutron emission value are adopted from Ref.…”
Section: A Excited States Of 106 Mosupporting
confidence: 88%
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“…Coincidence relationships observed in the current work are consistent with this decay pattern, and confirmed by Ref. [5]. Spins and parities, and the β-delayed neutron emission value are adopted from Ref.…”
Section: A Excited States Of 106 Mosupporting
confidence: 88%
“…The structure of the progeny, 106 Mo, has been well investigated through prompt-fission-fragment γ-ray spectroscopy, but our β-decay study populated a wealth of new low-spin levels and offers access to particle-hole states not seen in prompt fission. During the preparation of this manuscript, a similar β-decay study performed at the RIKEN RI Beam Factory was published [5]. The results presented below are in broad agreement with the findings of the RIKEN work, although some details differ, both in the data and in their interpretation.…”
Section: Introductionsupporting
confidence: 80%
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“…Those after the F1 and F5 degraders were set to 7.128 and 6.267 Tm, respectively. Table I summarizes four different settings of the slits at the dispersive focus F1 and the achromatic focus F2, used to change the mixture of the RI beams as required by the primary decay experiment [5,24,25]. The slit at the dispersive focus F5 was fully opened and that at the achromatic focus F7, being the last focus of the second stage, was set to ±20 mm.…”
Section: Methodsmentioning
confidence: 99%