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Determination of beta-delayed neutron emission probability limits of rhodium isotopes by gamma-ray spectroscopy

Authors
Shearman, R.[Shearman, R.]Lorusso, G.[Lorusso, G.]Boso, A.[Boso, A.]Regan, P.H.[Regan, P.H.]Nishimura, S.[Nishimura, S.]Xu, Z.Y.[Xu, Z.Y.]Jungclaus, A.[Jungclaus, A.]Shimizu, Y.[Shimizu, Y.]Simpson, G.S.[Simpson, G.S.]Söderström, P.-A.[Söderström, P.-A.]Watanabe, H.[Watanabe, H.]Browne, F.[Browne, F.]Doornenbal, P.[Doornenbal, P.]Gey, G.[Gey, G.]Jung, H.S.[Jung, H.S.]Meyer, B.[Meyer, B.]Sumikama, T.[Sumikama, T.]Taprogge, J.[Taprogge, J.]Vajta, Z.[Vajta, Z.]Wu, J.[Wu, J.]Baba, H.[Baba, H.]Benzoni, G.[Benzoni, G.]Chae, K.Y.[Chae, K.Y.]Crespi, F.C.L.[Crespi, F.C.L.]Fukuda, N.[Fukuda, N.]Gernhauser, R.[Gernhauser, R.]Inabe, N.[Inabe, N.]Isobe, T.[Isobe, T.]Kajino, T.[Kajino, T.]Kameda, D.[Kameda, D.]Kim, G.D.[Kim, G.D.]Kim, Y.-K.[Kim, Y.-K.]Kajouharov, I.[Kajouharov, I.]Kondev, F.G.[Kondev, F.G.]Kubo, T.[Kubo, T.]Kurz, N.[Kurz, N.]Kwon, Y.K.[Kwon, Y.K.]Lane, G.J.[Lane, G.J.]Li, Z.[Li, Z.]Montaner-Pizá, A.[Montaner-Pizá, A.]Moschner, K.[Moschner, K.]Naqvi, F.[Naqvi, F.]Niikura, M.[Niikura, M.]Nishibata, H.[Nishibata, H.]Odahara, A.[Odahara, A.]Orlandi, R.[Orlandi, R.]Patel, Z.[Patel, Z.]Podolyák, Z.[Podolyák, Z.]Sakurai, H.[Sakurai, H.]Schaffner, H.[Schaffner, H.]Schury, P.[Schury, P.]Shibagaki, S.[Shibagaki, S.]Steiger, K.[Steiger, K.]Suzuki, H.[Suzuki, H.]Takeda, H.[Takeda, H.]Wendt, A.[Wendt, A.]Yagi, A.[Yagi, A.]Yoshinaga, K.[Yoshinaga, K.]
Issue Date
2020
Publisher
IOP Publishing Ltd
Citation
Journal of Physics: Conference Series, v.1643, no.1
Indexed
SCOPUS
Journal Title
Journal of Physics: Conference Series
Volume
1643
Number
1
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/6630
DOI
10.1088/1742-6596/1643/1/012208
ISSN
1742-6588
Abstract
The decay of five neutron-heavy rhodium isotopes were studied at the Radioactive Isotope Beam Factory (RIBF) Facility at the RIKEN Nishina Center after relativistic fission of 238U beam on a thick beryllium target. Previously unknown associated gamma-ray decay energies are reported for each nuclide, and through evaluating the intensity of the 2+ → 0+ E2 transition in the even-even palladium daughter nuclei, 120,122,124Pd, from the beta-tagged gamma-ray spectra an upper or lower limit of beta-delayed neutron emission is deduced for each nuclei. A general, expected trend of increasing Pn is observed in the direction of the neutron drip line. © Published under licence by IOP Publishing Ltd.
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