Ferreira L S, Maglione E
Centro de Física, Instituto Superior Tecnico, Lisbon, Portugal.
Phys Rev Lett. 2001 Feb 26;86(9):1721-4. doi: 10.1103/PhysRevLett.86.1721.
Proton decay from odd-odd deformed nuclei is a long-standing unsolved problem. We present for the first time an exact solution using single particle Nilsson resonances. The lifetime is found to depend strongly on the single particle level occupied by the unpaired neutron, allowing a clear assignment of its Nilsson level. The emitters 112Cs, 140Ho, 150Lu, and 150Lu(m) are considered. The agreement with the experimental data is very good with deformations 0.1<beta<0.19 for 112Cs and -0.17<beta<-0.16 for the ground and isomeric states of 150Lu. In the case of 140Ho, two ranges of deformation 0.16<beta<0.28 and 0.28<beta<0.38 according to the neutron single particle level can describe the experimental half-life.
来自奇奇变形核的质子衰变是一个长期未解决的问题。我们首次使用单粒子尼尔森共振给出了精确解。发现寿命强烈依赖于未配对中子所占据的单粒子能级,从而能够明确确定其尼尔森能级。考虑了发射体112Cs、140Ho、150Lu和150Lu(m)。对于112Cs,当变形为0.1<β<0.19时,以及对于150Lu的基态和同质异能态,当-0.17<β<-0.16时,与实验数据的吻合度非常好。在140Ho的情况下,根据中子单粒子能级,两个变形范围0.16<β<0.28和0.28<β<0.38可以描述实验半衰期。