Department of Physics, Central Michigan University, Mount Pleasant, Michigan 48859, USA.
Phys Rev Lett. 2013 May 31;110(22):222502. doi: 10.1103/PhysRevLett.110.222502. Epub 2013 May 30.
Neutrinoless double beta decay, if observed, could distinguish whether the neutrino is a Dirac or a Majorana particle, and it could be used to determine the absolute scale of the neutrino masses. 136Xe is one of the most promising candidates for observing this rare event. However, until recently there were no positive results for the allowed and less rare two-neutrino double beta decay mode. The small nuclear matrix element associated with the long half-life represents a challenge for nuclear structure models used for its calculation. We report a new shell-model analysis of the two-neutrino double beta decay of 136Xe, which takes into account all relevant nuclear orbitals necessary to fully describe the associated Gamow-Teller strength. We further use the new model to analyze the main contributions to the neutrinoless double beta decay matrix element, and show that they are also diminished.
中微子无中微子双β衰变,如果被观测到,可能会区分出中微子是狄拉克还是马约拉纳粒子,它也可以用来确定中微子质量的绝对标度。136Xe 是观察这种罕见事件最有希望的候选者之一。然而,直到最近,允许的和不太罕见的双中微子双β衰变模式还没有得到肯定的结果。与长半衰期相关的小核矩阵元对用于计算的核结构模型提出了挑战。我们报告了 136Xe 的双中微子双β衰变的新壳模型分析,该分析考虑了充分描述相关的戈麦尔-泰勒强度所需的所有相关核轨道。我们进一步利用新模型分析了中微子无中微子双β衰变矩阵元的主要贡献,并表明它们也有所减少。