The difference between charge polarizations of fission fragments deduced by the static theoretical model and in the current data library

INTERNATIONAL JOURNAL OF MODERN PHYSICS E(2023)

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摘要
In this paper, we propose a theoretical method to deduce the charge polarization (CP) and most probable charge for fission fragments for the selected range of mass numbers based on a quantum many-body framework, namely, a constrained Skyrme Hartree-Fock+BCS model. We investigate the CP on the low energy neutron-induced fission of 235U as a representative reaction. We have found that the calculated CP has a noticeable dip that is clearly affected by the spherical shell structure around 132Sn and deformed one around A=144 and a peak for their counterparts, which are common features to those of widely-used Wahl's systematics, but otherwise, our CP values converge to zero. Especially, we could not see a deep valley and a big hump in the region of symmetric fission at A=112 and 124 present in Wahl's systematics. The gradient of our CP near the symmetric fission is negative concerning the mass number of fission fragments, which is consistent with other previous theoretical studies; however, that is the opposite of the gradient in Wahl's systematics. This paper shows the difference between the charge distribution of fission fragments, which has been used practically so far, in comparison with the calculation by microscopic nuclear theory.
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关键词
Fission product, charge polarization, microscopic structure, static many-body model
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