首页> 外文期刊>Physical review, C >Microscopic cluster model for the description of new experimental results on the ~(13)C(~(18)O,~(16)O)~(15)C two-neutron transfer at 84 MeV incident energy
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Microscopic cluster model for the description of new experimental results on the ~(13)C(~(18)O,~(16)O)~(15)C two-neutron transfer at 84 MeV incident energy

机译:用于描述新实验结果的微观簇模型〜(13)C(〜(18)o,〜(16)o)〜(15)C两中子转移在84 MeV入射能

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摘要

The ~(13)C(~(18)O,~(16)O)~(15)C reaction is studied at 84 MeV incident energy. Excitation energy spectra and absolute cross-section angular distributions for the strongest transitions are measured with good energy and angular resolutions. Strong selectivity for two-neutron configurations in the states of the residual nucleus is found. The measured cross-section angular distributions are analyzed by exact finite-range coupled reaction channel calculations. The two-particle wave functions are extracted using the extreme cluster and the independent coordinate scheme with shell-model derived coupling strengths. A new approach also is introduced, the microscopic cluster, in which the spectroscopic amplitudes in the center-of-mass reference frame are derived from shell-model calculations using the Moshinsky transformation brackets. This new model is able to describe well the experimental cross section and to highlight cluster configurations in the involved wave functions.
机译:〜(13)C(〜(18)o,〜(16)o)〜(15)C反应在84 MeV入射能中进行。 励磁能谱和最强转换的绝对横截面角分布以良好的能量和角度分辨率测量。 发现在残留核的状态下对两个中子配置的强烈选择性。 通过精确的有限范围耦合的反应通道计算分析测量的横截面角分布。 使用极端簇和具有壳模型导出的耦合强度的独立坐标方案来提取双粒子波函数。 还介绍了一种新方法,即微型簇,其中,群质量参考框架中的光谱幅度源自使用MOSHINSKY转换支架来源于壳模拟计算。 该新模型能够介绍实验横截面,并在涉及的波函数中突出显示群集配置。

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