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Neutron scattering from 208Pb at 30.4 and 40.0 MeV and isospin dependence of the nucleon optical potential

机译:208Pb在30.4 MeV和40.0 MeV处的中子散射和核素光势的同位旋依赖性

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Background: Analysis of data involving nuclei far from stability often requires the optical potential (OP) for neutron scattering. Because neutron data are seldom available, whereas proton scattering data are more abundant, it is useful to have estimates of the difference of the neutron and proton optical potentials. This information is contained in the isospin dependence of the nucleon OP. Here we attempt to provide it for the nucleon-208Pb system.nnPurpose: The goal of this paper is to obtain accurate n+208Pb scattering data and use it, together with existing p+208Pb and 208Pb(p, n)208BiIAS* data, to obtain an accurate estimate of the isospin dependence of the nucleon OP at energies in the 30–60-MeV range.nnMethod: Cross sections for n+208Pb scattering were measured at 30.4 and 40.0 MeV, with a typical relative (normalization) accuracy of 2–4% (3%). An angular range of 15∘ to 130∘ was covered using the beam-swinger time-of-flight system at Michigan State University. These data were analyzed by a consistent optical-model study of the neutron data and of elastic p+208Pb scattering at 45 and 54 MeV. These results were combined with a coupled-channel analysis of the 208Pb(p, n) reaction at 45 MeV, exciting the 0+ isobaric analog state (IAS) in 208Bi.nnResults: The new data and analysis give an accurate estimate of the isospin impurity of the nucleon-208Pb OP at 30.4 MeV caused by the Coulomb correction to the proton OP. The corrections to the real proton OP given by the CH89 global systematics were found to be only a few percent, whereas for the imaginary potential it was greater than 20% at the nuclear surface. On the basis of the analysis of the measured elastic n+208Pb data at 40 MeV, a Coulomb correction of similar strength and shape was also predicted for the p+208Pb OP at energies around 54 MeV.nnConclusions: Accurate neutron scattering data can be used in combination with proton scattering data and (p,n) charge exchange data leading to the IAS to obtain reliable estimates of the isospin impurity of the nucleon OP.
机译:背景:分析涉及原子核远非稳定的数据时,通常需要中子散射的光势(OP)。因为很少获得中子数据,而质子散射数据更丰富,所以对中子和质子光学势的差进行估计是有用的。该信息包含在核仁OP的同位旋依赖性中。目的:本文的目的是获得准确的n + 208Pb散射数据,并将其与现有的p + 208Pb和208Pb(p,n)208BiIAS *数据一起使用,以获得在30–60-MeV范围内能量下核仁OP的同位旋依赖性的准确估计。nn方法:在30.4和40.0 MeV处测量n + 208Pb散射的横截面,典型的相对(归一化)准确度为2-4%(3%)。密歇根州立大学的光束摇摆器飞行时间系统覆盖了15∘至130∘的角度范围。通过对中子数据以及45和54 MeV的弹性p + 208Pb散射进行一致的光学模型研究,对这些数据进行了分析。这些结果与在45 MeV下对208Pb(p,n)反应的耦合通道分析相结合,激发了208Bi.nn中的0+等压模拟状态(IAS)。结果:新的数据和分析给出了对同工旋的精确估计由于对质子OP进行库仑校正,导致30.4 MeV的208nbb核仁OP杂质。 CH89全球系统对实际质子OP的校正仅占百分之几,而对于假想势,其在核表面的校正量大于20%。根据对在40 MeV下测得的弹性n + 208Pb数据的分析,还预测了能量在54 MeV附近的p + 208Pb OP的强度和形状类似的库仑校正。nn结论:可以使用准确的中子散射数据结合质子散射数据和导致IAS的(p,n)电荷交换数据,获得对核仁OP的同位旋杂质的可靠估计。

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