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A dispersive optical model potential for nucleon induced reactions on ~(238)U and ~(232)Th nuclei with full coupling

机译:核核诱导反应对〜(238)U和〜(232)核的分散光学模型电位,具有全耦合

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A dispersive coupled-channel optical model potential (DCCOMP) that couples the ground-state rotational and low-lying vibrational bands of ~(238)U and ~(232)Th nuclei is studied. The derived DCCOMP couples almost all excited levels below 1 MeV of excitation energy of the corresponding even-even actinides. The ground state, octupole, beta, gamma, and non-axial bands are coupled. The first two isobar analogue states (IAS) populated in the quasi-elastic (p,n) reaction are also coupled in the proton induced calculation, making the potential approximately Lane consistent. The coupled-channel potential is based on a soft-rotor description of the target nucleus structure, where dynamic vibrations are considered as perturbations of the rigid rotor underlying structure. Matrix elements required to use the proposed structure model in Tamura coupled-channel scheme are derived. Calculated ratio R(U238/Th232) of the total cross-section difference to the averaged σ_T for ~(238)U and ~(232)Th nuclei is shown to be in excellent agreement with measured data.
机译:研究了与〜(238)U和〜(232)核的接地旋转和低位振动带耦合的分散耦合通道光学模型电位(DCComp)。衍生的DCComp几乎所有兴奋的水平低于1 meV的相应偶数均匀的均匀均匀的激发能量。接地状态,Octupole,β,伽马和非轴带耦合。在准弹性(P,N)反应中填充的前两种等离的二氧化物类似物(IAS)也在质子诱导的计算中偶联,使得潜在的局部通道一致。耦合通道电位基于目标核结构的软转子描述,其中动态振动被认为是刚性转子底层结构的扰动。推导出在典节耦合通道方案中使用所提出的结构模型所需的矩阵元件。计算的比率R(U238 / th232)与〜(238)U和〜(232)核的平均值σ_t的总横截面差异显示出与测量数据的良好协议。

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