Shearman, R.Lorusso, G.Boso, A.Regan, P. H.Nishimura, S.Xu, Z. Y.Jungclaus, A.Shimizu, Y.Simpson, G. S.Söderström, P. A.Watanabe, H.Browne, F.Doornenbal, P.Gey, G.Jung, H. S.Meyer, B.Sumikama, T.Taprogge, J.Vajta, ZsWu, J.Baba, H.Benzoni, G.Chae, K. Y.Crespi, F. C.L.Fukuda, N.Gernhauser, R.Inabe, N.Isobe, T.Kajino, T.Kameda, D.Kim, G. D.Kim, Y. K.Kajouharov, I.Kondev, F. G.Kubo, T.Kurz, N.Kwon, Y. K.Lane, G. J.Li, Z.Montaner-Pizá, A.Moschner, K.Naqvi, F.Niikura, M.Nishibata, H.Odahara, A.Orlandi, R.Patel, Z.Podolyák, ZsSakurai, H.Schaffner, H.Schury, P.Shibagaki, S.Steiger, K.Suzuki, H.Takeda, H.Wendt, A.Yagi, A.Yoshinaga, K.2026-01-012026-01-011742-6588https://hdl.handle.net/1885/733799322The 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.This work was partially supported by the STFC UK (grant numbers ST/L005743/1 and ST/P005314) and UK Department of Business, Energy and Industrial Strategy (BEIS) via the National Measurement System. RS thanks the Nuclear Decommissioning Authority (NDA) for the award of an NDA Bursary. FGK acknowledges funding by the U.S. Department of Energy, Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357. This work was partially supported by the STFC UK (grant numbers ST/L005743/1 and ST/P005314) and UK Department of Business, Energy and Industrial Strategy (BEIS) via the National Measurement System. RS thanks the Nuclear Decommissioning Authority (NDA) for the award of an NDA Bursary. FGK acknowledges funding by the U.S. Department of Energy, Ofice of Nuclear Physics, under Contract No. DE-AC02-06CH11357.enPublisher Copyright: © Published under licence by IOP Publishing Ltd.Determination of beta-delayed neutron emission probability limits of rhodium isotopes by gamma-ray spectroscopy2020-12-2310.1088/1742-6596/1643/1/01220885098487130