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Anomalous neutron yields confirmed for Ba-Mo and newly observed for Ce-Zr from spontaneous fission of Cf 252

We reinvestigated the neutron multiplicity yields of Ba-Mo, Ce-Zr, Te-Pd, and Nd-Sr from the spontaneous fission of 252 Cf by (i) using both γ -γ -γ -γ and γ -γ -γ coincidence data, (ii) using up to date level scheme structures, and (iii) crosschecking analogous energy transitions in multiple isotopes, we have achieved higher precision than previous analyses. Particular attention was given to the Ba-Mo pairs where our results clearly confirm that the Ba-Mo yield data have a second hot fission mode where 8–10, and now 11 neutron evaporation channels are observed. These are the first observations of the 11 neutron channel. These 8–11 neutron channels are observed for the first time in the Ce-Zr pairs, but are not observed in other fission pairs. The measured intensities of the second mode in Ba-Mo and Ce-Zr pairs are ~1.5(4)% and ~1.0(3)%, respectively. These high neutron number evaporation modes can be an indication of hyperdeformation and/or octupole deformation in 143-145 Ba and in 146,148 Ce at scission to give rise to such high neutron multiplicities.

252-Cf↗

Materials Data on Ba3Mo by Materials Project

Ba3Mo is alpha bismuth trifluoride structured and crystallizes in the cubic Fm-3m space group. The structure is three-dimensional. there are two inequivalent Ba sites. In the first Ba site, Ba is bonded to four equivalent Ba and four equivalent Mo atoms to form a mixture of distorted edge, corner, and face-sharing BaBa4Mo4 tetrahedra. All Ba–Ba bond lengths are 3.81 Å. All Ba–Mo bond lengths are 3.81 Å. In the second Ba site, Ba is bonded in a 8-coordinate geometry to eight equivalent Ba and six equivalent Mo atoms. All Ba–Mo bond lengths are 4.40 Å. Mo is bonded in a body-centered cubic geometry to fourteen Ba atoms.

36 MATERIALS SCIENCE↗