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Characteristics of light charged particle emission in the ternary fission of 250Cf and 252Cf at different excitation energies

机译:不同激发能下250Cf和252Cf三元裂变中的带电粒子发射特征

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摘要

The emission probabilities and the energy distributions of tritons, α and ^6He particles emitted in the spontaneous ternary fission (zero excitation energy) of ^250Cf and ^252Cf and in the cold neutron induced fission (excitation energy ≈ 6.5 MeV) of ^249Cf and 251Cf are determined. The particle identification was done with suited ΔE-E telescope detectors, at the IRMM (Geel, Belgium) for the spontaneous fission and at the ILL (Grenoble, France) for the neutron induced fission measurements. Hence particle emission characteristics of the fissioning systems ^250Cf and ^252Cf are obtained at zero and at about 6.5 MeV excitation energies. While the triton emission probability is hardly influenced by the excitation energy, the ^4He and ^6He emission probability in spontaneous fission is higher than for neutron induced fission. This can be explained by the strong influence of the cluster preformation probability on the ternary particle emission probability.
机译:ton 250Cf和^ 252Cf的自发三元裂变(零激发能)和249Cf和249Cf的冷中子感应裂变(激发能≈6.5 MeV)发出的tri子,α和^ 6He粒子的发射概率和能量分布。确定251Cf。粒子识别是通过合适的ΔE-E望远镜探测器完成的,在IRMM(比利时吉尔)进行自发裂变,在ILL(法国格勒诺布尔)进行中子诱发裂变测量。因此,裂变系统的250 250 Cf和252Cf的粒子发射特性在零和约6.5 MeV激发能下获得。尽管tri光子的发射几率几乎不受激发能的影响,但自发裂变的^ 4He和^ 6He发射几率高于中子诱发裂变。这可以通过簇预形成概率对三元粒子发射概率的强烈影响来解释。

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