Identification of new transitions and mass assignments of levels in $^{143-153}$Pr
E. H. Wang, A. Lemasson, J. H. Hamilton, A. V. Ramayya, J., K. Hwang, J. M. Eldridge, A. Navin, M. Rejmund, S. Bhattacharyya, and S. H. Liu, N. T. Brewer, Y. X. Luo, J. O. Rasmussen, H. L., Liu, H. Zhou, Y. X. Liu, H. J. Li, Y. Sun, F. R. Xu, S. J., Zhu, G. M. Ter-Akopian

TL;DR
This study clarifies and extends the nuclear level schemes of Pr isotopes from A=143 to 153 by combining in-beam and spontaneous fission data, leading to new transitions, bands, and reliable mass assignments.
Contribution
It provides new spectroscopic information, confirms previous level assignments, and introduces novel transitions and bands in Pr isotopes using combined experimental methods.
Findings
New transitions and bands identified in several Pr isotopes.
Confirmed and corrected previous level assignments.
Established reliable mass assignments for levels in 151,152,153Pr.
Abstract
The previously reported levels assigned to 151,152,153Pr have recently been called into question regarding their mass assignment. The above questioned level assignments are clarified by measuring g-transitions tagged with A and Z in an in-beam experiment in addition to the measurements from 252Cf spontaneous fission (SF) and establish new spectroscopic information from to in the Pr isotopic chain. The isotopic chain 143-153Pr has been studied from the spontaneous fission of 252Cf by using Gammasphere and also from the measurement of the prompt g-rays in coincidence with isotopically-identified fission fragments using VAMOS++ and EXOGAM at GANIL. The latter were produced using 238U beams on a 9Be target at energies around the Coulomb barrier. The g-g-g-g data from 252Cf (SF) and those from the GANIL in-beam A- and Z-gated spectra were combined to unambiguously assign the…
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