Bimodal fission in binary and ternary spontaneous fission of 252Cf

The hot bimodal fission of 252Cf is reexamined with new high-statistics data. We constructed a γ-γ-γ coincidence cube for binary fission and LCP-gated γ-γ matrix for ternary fission. By identifying the secondary fission fragments from their γ-ray transitions, we measured the yields for various fissi...

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Veröffentlicht in:Physics of atomic nuclei 2006-07, Vol.69 (7), p.1161-1167
Hauptverfasser: Fong, D., Hamilton, J. H., Ramayya, A. V., Hwang, J. K., Goodin, C., Li, K., Kormicki, J., Rasmussen, J. O., Luo, Y. X., Wu, S. C., Lee, I. Y., Daniel, A. V., Ter-Akopian, G. M., Popeko, G. S., Fomichev, A. S., Rodin, A. M., Oganessian, Yu. Ts, Jandel, M., Kliman, J., Krupa, L., Cole, J. D., Stoyer, M. A., Donangelo, R., Ma, W. C.
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Sprache:eng
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Zusammenfassung:The hot bimodal fission of 252Cf is reexamined with new high-statistics data. We constructed a γ-γ-γ coincidence cube for binary fission and LCP-gated γ-γ matrix for ternary fission. By identifying the secondary fission fragments from their γ-ray transitions, we measured the yields for various fission splits. The normal neutron yield distribution is found to be Gaussian for Xe-Ru. However, the binary fission split of Ba-Mo is found to exhibit a bimodal neutron distribution with the “hot mode” corresponding to ≈3.1% of the total yield. In α ternary fission, the first measurements of yields for specific fission splits are presented. The Te-α-Ru and Xe-α-Mo neutron yields fit well with a single mode, but the Ba-α-Zr split shows evidence for an enhanced hot mode with an intensity of ≈13.8% of the normal mode.
ISSN:1063-7788
1562-692X
DOI:10.1134/S1063778806070118