论文标题
核壳模型计算中性秒双β衰变矩阵元件的当前状态
Present Status of Nuclear Shell-Model Calculations of Neutrinoless Double-Beta Decay Matrix Elements
论文作者
论文摘要
中微子双β衰减搜索目前是实验物理学的主要焦点之一。对这种衰减的观察将对我们对中微子的内在性质的理解和标准模型的局限性产生重要意义。该过程的速率取决于未知的中微子有效质量和与给定的中性s中性双β衰变转变相关的核基质元件。后者只能通过理论计算提供,因此需要对核基质元素进行准确的理论预测,以实验程序的成功。这需要驱使理论核物理界提供最可靠的核基质元素计算。在用于解决多体核问题的各种计算模型中,壳模型被广泛认为是核描述微观描述的基本框架。在这里,我们回顾了核基质元件的最新和晚期壳模量计算,考虑到实验兴趣的核的光 - 中性 - 交换通道。我们报告了理论计算对模型空间和壳型核汉密尔顿人的敏感性。
Neutrinoless double beta decay searches are currently among the major foci of experimental physics. The observation of such a decay will have important implications in our understanding of the intrinsic nature of neutrinos and shed light on the limitations of the Standard Model. The rate of this process depends on both the unknown neutrino effective mass and the nuclear matrix element associated with the given neutrinoless double-beta decay transition. The latter can only be provided by theoretical calculations, hence the need of accurate theoretical predictions of the nuclear matrix element for the success of the experimental programs. This need drives the theoretical nuclear physics community to provide the most reliable calculations of the nuclear matrix elements. Among the various computational models adopted to solve the many-body nuclear problem, the shell model is widely considered as the basic framework of the microscopic description of the nucleus. Here, we review the most recent and advanced shell-model calculations of the nuclear matrix elements considering the light-neutrino-exchange channel for nuclei of experimental interest. We report the sensitivity of the theoretical calculations with respect to variations in the model spaces and the shell-model nuclear Hamiltonians.