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arXiv · 2503.23681

Universality of Shell Effects in Fusion-Fission Mass Distributions

Abstract

We present the results of a broad, systematic study of heavy-ion induced fission mass distributions for every even-Z compound nucleus ($Z_\mathrm{CN}$) from $^{144}$Gd to $^{212}$Th. We find systematic evidence of shell-driven structure in every fission mass distribution. The change in shape of the mass distributions with $Z_\mathrm{CN}$ is consistent with the results of quantitative simultaneous fitting in mass and total kinetic energy, demonstrating that fragment proton shell gaps at $Z_\mathrm{FF} = 34, 36$ and $Z_\mathrm{FF} = 44, 46$ are \textit{both} major drivers of fission mass distributions below the actinide region. The mass distributions show enhanced yields at mass symmetry for values of $Z_\mathrm{CN}$ equal to two times these favoured $Z_\mathrm{FF}$ values. Thus, the same shell gaps that are drivers of mass-asymmetric fission also affect mass distributions at and near mass-symmetry. For all systems a second, more mass-asymmetric, fission mode is required to fit the fission mass distributions. If driven by a single shell gap, it appears to be in the light fragment around $Z_\mathrm{FF} = 28, 30$.

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J. Buete, B. M. A. Swinton-Bland, D. J. Hinde, K. J. Cook, M. Dasgupta, A. C. Berriman, D. Y. Jeung, K. Banerjee, L. T. Bezzina, I. P. Carter, C. Sengupta, C. Simenel, E. C. Simpson. 2025-03-31. Universality of Shell Effects in Fusion-Fission Mass Distributions. https://arxiv.org/abs/2503.23681

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