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Scission shapes of pair fragments in asymmetric and symmetric fission modes

机译:非对称和对称裂变模式下的成对碎片的分裂形状

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Scission shapes composed of two touching spheroids in asymmetric and symmetric fission modes have been deduced from static potential calculations with the experimental fragment total kinetic energy and excitation energies for a typical fragment pair of 103Nb and 130Sn in the proton-induced fission of 232Th. It was found that the fragment deformation of the heavy fragment 130Sn in the symmetric fission mode was extremely large compared with that in the asymmetric fission and those of the complementary fragment 103Nb. Such scission shapes also provide internal excitation energies of pair fragments in the two fission modes. The deduced total internal excitation energies of complementary fragments for the two fission modes are nearly the same as the excitation energy of the fissioning nucleus. The results suggest that the two fission modes are strongly characterized by the degrees of fragment deformation of the heavy fragments, not by the total internal excitation energies at scission.
机译:从静态电势计算中,利用典型的103 Nb和130 Nb Sn片段对的实验片段总动能和激发能,通过静电势计算推导了由两个接触球体组成的分裂形状。质子引起的232 Th裂变结果发现,与不对称裂变和互补片段103 Nb相比,对称裂变模式下的重碎片130 Sn的碎片变形极大。这种裂变形状还在两个裂变模式中提供了成对碎片的内部激发能。推导的两个裂变模式的互补碎片的总内部激发能与裂变核的激发能几乎相同。结果表明,两种裂变模式的特征都在于重碎片的碎片变形程度,而不是断裂时内部的总激发能。

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