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Fission dynamics within time-dependent Hartree-Fock: Deformation-induced fission

机译:时间依赖的哈特里-福克内部的裂变动力学:形变诱发的裂变

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摘要

Background: Nuclear fission is a complex large-amplitude collective decay mode in heavy nuclei. Microscopic density functional studies of fission have previously concentrated on adiabatic approaches based on constrained static calculations ignoring dynamical excitations of the fissioning nucleus and the daughter products. Purpose: We explore the ability of dynamic mean-field methods to describe fast fission processes beyond the fission barrier, using the nuclide 240Pu as an example. Methods: Time-dependent Hartree-Fock calculations based on the Skyrme interaction are used to calculate nonadiabatic fission paths, beginning from static constrained Hartree-Fock calculations. The properties of the dynamic states are interpreted in terms of the nature of their collective motion. Fission product properties are compared to data. Results: Parent nuclei constrained to begin dynamic evolution with a deformation less than the fission barrier exhibit giant-resonance-type behavior. Those beginning just beyond the barrier explore large-amplitude motion but do not fission, whereas those beginning beyond the two-fragment pathway crossing fission to final states which differ according to the exact initial deformation. Conclusions: Time-dependent Hartree-Fock is able to give a good qualitative and quantitative description of fast fission, provided one begins from a sufficiently deformed state.
机译:背景:核裂变是重核中复杂的大振幅集体衰变模式。裂变的微观密度泛函研究以前集中在基于有限静态计算的绝热方法,而忽略了裂变核和子产物的动态激发。目的:我们以核素240Pu为例,探讨动态平均场方法描述超越裂变屏障的快速裂变过程的能力。方法:基于静态约束的Hartree-Fock计算,基于Skyrme相互作用的时变Hartree-Fock计算用于计算非绝热裂变路径。动态状态的属性根据其集体运动的性质进行解释。将裂变产物性质与数据进行比较。结果:受约束的母核开始动态演化,其变形小于裂变屏障,表现出巨共振型行为。那些刚好越过障碍而开始探索大振幅运动但不发生裂变,而那些刚开始越过两片段途径越过裂变到达最终状态的状态则根据确切的初始变形而不同。结论:时间依赖的Hartree-Fock能够给出快速裂变的良好定性和定量描述,前提是该裂变从充分变形的状态开始。

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