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The phenomenon of nucleon emission at high angular momentum states of fused compound systems

机译:熔融复合系统在高角动量状态下的核子发射现象

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Nucleon emission from high spin fused compound systems is analyzed in the framework of the statistical theory of hot rotating (STHR) nuclei. This is an elaborate version of our earlier work and we present our results for ~(156)Er, ~(166)Er, ~(168)Yb and ~(188)Hg. We predict an increase in neutron emission for ~(166)Er due to the abrupt decrease in neutron separation energy around I ≈ 55h. Since the drop in the separation energy is closely associated with the structural changes in the rotating nuclei, relative increase in neutron emission probability around certain values of angular momentum may be construed as evidence for the shape transition. A similar effect is predicted for ~(168)Yb around I ≈? 55h. We also extend the microscopic cranked Nilsson method (CNM) to hot nuclear systems and compare the results with that of the STHR method. The two methods yield different results for triaxially deformed nuclei although for biaxial deformations the results are identical. This is illustrated for
机译:在热旋转(STHR)核的统计理论框架内分析了高自旋融合化合物系统的核子发射。这是我们早期工作的详尽版本,我们给出了〜(156)Er,〜(166)Er,〜(168)Yb和〜(188)Hg的结果。我们预测〜(166)Er的中子发射会增加,这是由于I≈55h附近中子分离能突然下降。由于分离能的下降与旋转核的结构变化密切相关,因此可以将围绕某些角动量值的中子发射概率的相对增加解释为形状过渡的证据。预测在I≈?附近的〜(168)Yb具有相似的效果。 55小时我们还将微观曲柄尼尔森方法(CNM)扩展到热核系统,并将结果与​​STHR方法的结果进行比较。两种方法对于三轴变形的核产生不同的结果,尽管对于双轴变形的结果是相同的。这说明了

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