HEAVIEST NUCLEI: SYNTHESIS AND DECAY PROPERTIES

Y. T. Oganessian
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Abstract

A problem of possible existence of the “islands of stability” in the region of very heavy (superheavy) elements has long been the subject of intensive discussions. The interest in this problem is linked with determining the limit of nuclear mass existence, predicted by calculation on the basis of various theoretical models. One important consequence of these calculations [1-8] was the disclosure of a significant gap in the spectrum of low lying levels in the region of deformed nuclei around N = 162 (deformed shell) and hypothetical superheavy nuclei, viz. a new (following N = 126) closed spherical neutron shell N = 184. It was also shown that the considerable variations of the binding energy of spherical nuclei were due to the nuclear shells, and that shell effects might be present also in deformed “magic nuclei” (deformed shells). And finally, at further and quite significant increase of the deformation
最重核:合成和衰变性质
在重元素(超重元素)区域可能存在“稳定岛”的问题长期以来一直是密集讨论的主题。对这个问题的兴趣与确定核质量存在的极限有关,这是在各种理论模型的基础上通过计算来预测的。这些计算的一个重要结果[1-8]是揭示了在N = 162(变形壳)附近的变形核区域和假设的超重核,即一个新的(在N = 126之后)闭合球形中子壳N = 184的低洼能级的谱中有一个显著的间隙。结果还表明,球核结合能的显著变化是由核壳引起的,而在变形的“魔核”(变形壳)中也可能存在壳效应。最后,形变进一步显著增加
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