论文标题
裂变碎片中子多重性的相关研究
Correlation studies of fission fragment neutron multiplicities
论文作者
论文摘要
我们从裂变片段中计算出具有指定总片段动能的事件的质量数的裂变片段。从初始化合物核到分裂构型的形状演变是通过大都市步行方法在五维势能 - 能源景观上获得的,该景观是用宏观微观显微镜方法计算的,用于三季度表面形状的家族。形状依赖性的微观水平密度用于引导随机行走,以分隔sc骨时两个原始碎片之间的固有激发能,并确定从碎片中蒸发的中子的光谱。研究了统计激发和分裂时形状失真所产生的片段的总激发能的贡献。与$^{235} $ u(n $ _ {\ rm th} $,f)的裂变片段相关的有关中子多重性的可用实验数据获得了良好的协议。在较高的中子能量下,出现了一个超长裂变模式,它会影响观测值对总碎片动能的依赖性。
We calculate neutron multiplicities from fission fragments with specified mass numbers for events having a specified total fragment kinetic energy. The shape evolution from the initial compound nucleus to the scission configurations is obtained with the Metropolis walk method on the five-dimensional potential-energy landscape, calculated with the macroscopic-microscopic method for the three-quadratic-surface shape family. Shape-dependent microscopic level densities are used to guide the random walk, to partition the intrinsic excitation energy between the two proto-fragments at scission, and to determine the spectrum of the neutrons evaporated from the fragments. The contributions to the total excitation energy of the resulting fragments from statistical excitation and shape distortion at scission is studied. Good agreement is obtained with available experimental data on neutron multiplicities in correlation with fission fragments from $^{235}$U(n$_{\rm th}$,f). At higher neutron energies a superlong fission mode appears which affects the dependence of the observables on the total fragment kinetic energy.